2185Modes of Variability Anne x IV
AIV
Jerez, S. et al., 2013: The Impact of the North Atlantic Oscillation on Renewable
Energy Resources in Southwestern Europe. Journal of Applied Meteorology
and Climatology, 52(10), 2204–2225, doi:10.1175/jamc-d-12-0257.1.
Jiang, X., M. Zhao, E.D. Maloney, and D.E. Waliser, 2016: Convective moisture
adjustment time scale as a key factor in regulating model amplitude of
the Madden–Julian Oscillation. Geophysical Research Letters, 43(19),
10412–10419, doi:10.1002/2016gl070898.
Joly, M. and A. Voldoire, 2010: Role of the Gulf of Guinea in the inter-annual
variability of the West African monsoon: what do we learn from CMIP3
coupled simulations? International Journal of Climatology, 30(12),
1843–1856, doi:10.1002/joc.2026.
Jones, J.M. et al., 2016: Assessing recent trends in high-latitude Southern
Hemisphere surface climate. Nature Climate Change, 6(10), 917–926,
doi:10.1038/nclimate3103.
Jones, P.D., T. Jonsson, and D. Wheeler, 1997: Extension to the North Atlantic
oscillation using early instrumental pressure observations from Gibraltar
and south-west Iceland. International Journal of Climatology, 17(13),
1433–1450, doi:10.1002/(sici)1097-0088(19971115)17:13<1433::aid-joc
2 03 >3.0.co;2-p.
Joseph, S., A.K. Sahai, and B.N. Goswami, 2009: Eastward propagating MJO
during boreal summer and Indian monsoon droughts. Climate Dynamics,
32(7–8), 1139–1153, doi:10.1007/s00382-008-0412-8.
Jouanno, J., O. Hernandez, and E. Sanchez-Gomez, 2017: Equatorial Atlantic
interannual variability and its relation to dynamic and thermodynamic
processes. Earth System Dynamics, 8(4), 1061–1069, doi:10.5194/esd-8-
1061-2017.
Kajtar, J.B., A. Santoso, M.H. England, and W. Cai, 2017: Tropical climate
variability: interactions across the Pacific, Indian, and Atlantic Oceans.
Climate Dynamics, 48(7–8), 2173–2190, doi:10.1007/s00382-016-3199-z.
Kamae, Y., W. Mei, S.-P. Xie, M. Naoi, and H. Ueda, 2017: Atmospheric Rivers
over the Northwestern Pacific: Climatology and Interannual Variability.
Journal of Climate, 30(15), 5605–5619, doi:10.1175/jcli-d-16-0875.1.
Kang, S.M., L.M. Polvani, J.C. Fyfe, and M. Sigmond, 2011: Impact of Polar Ozone
Depletion on Subtropical Precipitation. Science, 332(6032), 951–954,
doi:10.1126/science.1202131.
Karoly, D.J., 1989: Southern Hemisphere Circulation Features Associated with
El Niño-Southern Oscillation Events. Journal of Climate, 2(11), 1239–1252,
www.jstor.org/stable/26196374.
Karpechko, A.Y., P. Hitchcock, D.H.W. Peters, and A. Schneidereit, 2017:
Predictability of downward propagation of major sudden stratospheric
warmings. Quarterly Journal of the Royal Meteorological Society, 143(704),
1459–1470, doi:10.1002/qj.3017.
Kayanne, H. et al., 2006: Indian Ocean Dipole index recorded in Kenyan coral
annual density bands. Geophysical Research Letters, 33(19), L19709,
doi:10.1029/2006gl027168.
Keenlyside, N.S. and M. Latif, 2007: Understanding Equatorial Atlantic Interannual
Variability. Journal of Climate, 20(1), 131–142, doi:10.1175/jcli3992.1.
Keenlyside, N.S., H. Ding, and M. Latif, 2013: Potential of equatorial Atlantic
variability to enhance El Niño prediction. Geophysical Research Letters,
40(10), 2278–2283, doi:10.1002/grl.50362.
Kemball-Cook, S. and B. Wang, 2001: Equatorial Waves and Air–Sea Interaction
in the Boreal Summer Intraseasonal Oscillation. Journal of Climate, 14(13),
2923–2942, doi:10.1175/1520-0442(2001)014<2923:ewaasi>2.0.co;2.
Kennedy, J.J., N.A. Rayner, C.P. Atkinson, and R.E. Killick, 2019: An Ensemble
Data Set of Sea Surface Temperature Change From 1850: The Met Office
Hadley Centre HadSST.4.0.0.0 Data Set. Journal of Geophysical Research:
Atmospheres, 124(14), 7719–7763, doi:10.1029/2018jd029867.
Kerr, R.A., 2000: A North Atlantic Climate Pacemaker for the Centuries.
Science, 288(5473), 1984–1985, doi:10.1126/science.288.5473.1984.
Kikuchi, K., B. Wang, and Y. Kajikawa, 2012: Bimodal representation of the
tropical intraseasonal oscillation. Climate Dynamics, 38(9–10), 1989–2000,
doi:10.1007/s00382-011-1159-1.
Kilbourne, K.H., M.A. Alexander, and J.A. Nye, 2014: A low latitude paleoclimate
perspective on Atlantic multidecadal variability. Journal of Marine Systems,
133, 4–13, doi:10.1016/j.jmarsys.2013.09.004.
Kim, D. et al., 2009: Application of MJO Simulation Diagnostics to Climate
Models. Journal of Climate, 22(23), 6413–6436, doi:10.1175/2009jcli3063.1.
Kim, D. et al., 2012: The Tropical Subseasonal Variability Simulated in the NASA
GISS General Circulation Model. Journal of Climate, 25(13), 4641–4659,
doi:10.1175/jcli-d-11-00447.1.
Kim, H., F. Vitart, and D.E. Waliser, 2018: Prediction of the Madden–Julian
Oscillation: A Review. Journal of Climate, 31(23), 9425–9443, doi:10.1175/
jcli-d-18-0210.1.
Kim, H.-M., 2017: The impact of the mean moisture bias on the key physics
of MJO propagation in the ECMWF reforecast. Journal of Geophysical
Research: Atmospheres, 122(15), 7772–7784, doi:10.1002/2017jd027005.
King, A.D. et al., 2014: Extreme Rainfall Variability in Australia: Patterns, Drivers,
and Predictability. Journal of Climate, 27(15), 6035–6050, doi:10.1175/
jcli-d-13-00715.1.
Kitzberger, T., P.M. Brown, E.K. Heyerdahl, T.W. Swetnam, and T.T. Veblen,
2007: Contingent Pacific–Atlantic Ocean influence on multicentury wildfire
synchrony over western North America. Proceedings of the National
Academy of Sciences, 104(2), 543–548, doi:10.1073/pnas.0606078104.
Klein, S.A., B.J. Soden, and N.-C. Lau, 1999: Remote Sea Surface Temperature
Variations during ENSO: Evidence for a Tropical Atmospheric Bridge. Journal
of Climate, 12(4), 917–932, doi:10.1175/1520-0442(1999)012<0917:rsst
vd>2.0.co;2.
Klotzbach, P.J. and E.C.J. Oliver, 2015: Modulation of Atlantic Basin Tropical
Cyclone Activity by the Madden–Julian Oscillation (MJO) from 1905 to 2011.
Journal of Climate, 28(1), 204–217, doi:10.1175/jcli-d-14-00509.1.
Knudsen, M.F., M.-S. Seidenkrantz, B.H. Jacobsen, and A. Kuijpers, 2011:
Tracking the Atlantic Multidecadal Oscillation through the last 8,000 years.
Nature Communications, 2(1), 178, doi:10.1038/ncomms1186.
Kosaka, Y., S.-P. Xie, N.-C. Lau, and G.A. Vecchi, 2013: Origin of seasonal
predictability for summer climate over the Northwestern Pacific. Proceedings
of the National Academy of Sciences, 110(19), 7574–7579, doi:10.1073/
pnas.1215582110.
Kostov, Y. et al., 2017: Fast and slow responses of Southern Ocean sea surface
temperature to SAM in coupled climate models. Climate Dynamics, 48(5–6),
1595–1609, doi:10.1007/s00382-016-3162-z.
Kucharski, F. and M.K. Joshi, 2017: Influence of tropical South Atlantic sea-
surface temperatures on the Indian summer monsoon in CMIP5 models.
Quarterly Journal of the Royal Meteorological Society, 143(704), 1351–1363,
doi:10.1002/qj.3009.
Kucharski, F., A. Bracco, J.H. Yoo, and F. Molteni, 2007: Low-Frequency Variability
of the Indian Monsoon–ENSO Relationship and the Tropical Atlantic: The
“Weakening” of the 1980s and 1990s. Journal of Climate, 20(16), 4255–4266,
doi:10.1175/jcli4254.1.
Kucharski, F., A. Bracco, J.H. Yoo, and F. Molteni, 2008: Atlantic forced component
of the Indian monsoon interannual variability. Geophysical Research Letters,
35(4), L04706, doi:10.1029/2007gl033037.
Kucharski, F. et al., 2016: Atlantic forcing of Pacific decadal variability. Climate
Dynamics, 46(7–8), 2337–2351, doi:10.1007/s00382-015-2705-z.
Kug, J.-S. and Y.-G. Ham, 2011: Are there two types of La Nina? Geophysical
Research Letters, 38(16), L16704, doi:10.1029/2011gl048237.
Kuleshov, Y., L. Qi, R. Fawcett, and D. Jones, 2008: On tropical cyclone activity
in the Southern Hemisphere: Trends and the ENSO connection. Geophysical
Research Letters, 35(14), L14S08, doi:10.1029/2007gl032983.
L’Heureux, M.L. and R.W. Higgins, 2008: Boreal Winter Links between the
Madden–Julian Oscillation and the Arctic Oscillation. Journal of Climate,
21(12), 3040–3050, doi:10.1175/2007jcli1955.1.
L’Heureux, M.L., S. Lee, and B. Lyon, 2013: Recent multidecadal strengthening
of the Walker circulation across the tropical Pacific. Nature Climate Change,
3(6), 571–576, doi:10.1038/nclimate1840.
2186Annex IV Modes of Variability
AIV
L’Heureux, M.L. et al., 2017: Observing and Predicting the 2015/16 El Niño.
Bulletin of the American Meteorological Society, 98(7), 1363–1382,
doi:10.1175/bams-d-16-0009.1.
Lapointe, F. et al., 2020: Annually resolved Atlantic sea surface temperature
variability over the past 2,900 y. Proceedings of the National Academy of
Sciences, 117(44), 27171–27178, doi:10.1073/pnas.2014166117.
Latif, M. and A. Grötzner, 2000: The equatorial Atlantic oscillation and its
response to ENSO. Climate Dynamics, 16(2), 213–218, doi:10.1007/s00382
0050014.
Lau, N.-C. and M.J. Nath, 2000: Impact of ENSO on the Variability of the
Asian–Australian Monsoons as Simulated in GCM Experiments. Journal of
Climate, 13(24), 4287–4309, doi:10.1175/1520-0442(2000)013<4287:io
eotv>2.0.co;2.
Lau, N.-C. and M.J. Nath, 2003: Atmosphere–Ocean Variations in the
Indo-Pacific Sector during ENSO Episodes. Journal of Climate, 16(1), 3–20,
doi:10.1175/1520-0442(2003)016<0003:aoviti>2.0.co;2.
Lau, W.K.M., D.E. Waliser, and B. Tian, 2012: Chemical and biological impacts.
In: Intraseasonal Variability in the Atmosphere-Ocean Climate System
[Lau, W.K.-M. and D.E. Waliser (eds.)]. Springer, Berlin and Heidelberg,
Germany, pp. 569–585, doi:10.1007/978-3-642-13914-7_18.
Le Mouël, J.-L., F. Lopes, and V. Courtillot, 2019: A Solar Signature in Many
Climate Indices. Journal of Geophysical Research: Atmospheres, 124(5),
2600–2619, doi:10.1029/2018jd028939.
Lee, J.-Y. et al., 2013: Real-time multivariate indices for the boreal summer
intraseasonal oscillation over the Asian summer monsoon region. Climate
Dynamics, 40(1–2), 493–509, doi:10.1007/s00382-012-1544-4.
Lee, J.-Y. et al., 2017: The long-term variability of Changma in the East Asian
summer monsoon system: A review and revisit. Asia-Pacific Journal of
Atmospheric Sciences, 53(2), 257–272, doi:10.1007/s13143-017-0032-5.
Lee, Y.-Y. and R. Grotjahn, 2019: Evidence of Specific MJO Phase Occurrence
with Summertime California Central Valley Extreme Hot Weather. Advances
in Atmospheric Sciences, 36(6), 589–602, doi:10.1007/s00376-019-8167-1.
Lewis, S.C. and A.N. LeGrande, 2015: Stability of ENSO and its tropical Pacific
teleconnections over the Last Millennium. Climate of the Past, 11(10),
1347–1360, doi:10.5194/cp-11-1347-2015.
Li, G., B. Ren, C. Yang, and J. Zheng, 2010: Indices of El Niño and El Niño Modoki:
An improved El Niño Modoki index. Advances in Atmospheric Sciences,
27(5), 1210–1220, doi:10.1007/s00376-010-9173-5.
Li, J. and J.X.L. Wang, 2003: A new North Atlantic Oscillation index and its
variability. Advances in Atmospheric Sciences, 20(5), 661–676, doi:10.1007/
bf02915394.
Li, K.-F., B. Tian, D.E. Waliser, and Y.L. Yung, 2010: Tropical mid-tropospheric
CO2 variability driven by the Madden–Julian oscillation. Proceedings of
the National Academy of Sciences, 107(45), 19171–19175, doi:10.1073/
pnas.1008222107.
Li, T., P. Liu, X. Fu, B. Wang, and G.A. Meehl, 2006: Spatiotemporal Structures
and Mechanisms of the Tropospheric Biennial Oscillation in the Indo-Pacific
Warm Ocean Regions. Journal of Climate, 19(13), 3070–3087, doi:10.1175/
jcli3736.1.
Li, W., L. Li, and Y. Deng, 2015: Impact of the Interdecadal Pacific Oscillation
on Tropical Cyclone Activity in the North Atlantic and Eastern North Pacific.
Scientific Reports, 5(1), 12358, doi:10.1038/srep12358.
Li, Z. et al., 2020: A robust relationship between multidecadal global warming
rate variations and the Atlantic Multidecadal Variability. Climate Dynamics,
55(7–8), 1945–1959, doi:10.1007/s00382-020-05362-8.
Lim, E.-P. et al., 2019: Australian hot and dry extremes induced by weakenings
of the stratospheric polar vortex. Nature Geoscience, 12(11), 896–901,
doi:10.1038/s41561-019-0456-x.
Lin, H., G. Brunet, and J. Derome, 2009: An Observed Connection between the
North Atlantic Oscillation and the Madden–Julian Oscillation. Journal of
Climate, 22(2), 364–380, doi:10.1175/2008jcli2515.1.
Lin, J.-L. et al., 2006: Tropical Intraseasonal Variability in 14 IPCC AR4 Climate
Models. Part I: Convective Signals. Journal of Climate, 19(12), 2665–2690,
doi:10.1175/jcli3735.1.
Linderholm, H.W., C.K. Folland, and A. Walther, 2009: A multicentury perspective
on the summer North Atlantic Oscillation (SNAO) and drought in the eastern
Atlantic Region. Journal of Quaternary Science, 24(5), 415–425, doi:10.1002/
jqs.1261.
Linderholm, H.W. et al., 2011: Interannual teleconnections between the
summer North Atlantic Oscillation and the East Asian summer monsoon.
Journal of Geophysical Research: Atmospheres, 116(D13), D13107,
doi:10.1029/2010jd015235.
Linsley, B.K., H.C. Wu, E.P. Dassié, and D.P. Schrag, 2015: Decadal changes in
South Pacific sea surface temperatures and the relationship to the Pacific
decadal oscillation and upper ocean heat content. Geophysical Research
Letters, 42, 2358–2366, doi:10.1002/2015gl063045.received.
Liu, C. et al., 2014: Northern Hemisphere mid-winter vortex-displacement and
vortex-split stratospheric sudden warmings: Influence of the Madden-Julian
Oscillation and Quasi-Biennial Oscillation. Journal of Geophysical Research:
Atmospheres, 119(22), 12599–12620, doi:10.1002/2014jd021876.
Liu, K.S. and J.C.L. Chan, 2008: Interdecadal Variability of Western North
Pacific Tropical Cyclone Tracks. Journal of Climate, 21(17), 4464–4476,
doi:10.1175/2008jcli2207.1.
Liu, T. et al., 2018: Influence of the May Southern annular mode on the South
China Sea summer monsoon. Climate Dynamics, 51(11–12), 4095–4107,
doi:10.1007/s00382-017-3753-3.
Liu, Z. and E. Di Lorenzo, 2018: Mechanisms and Predictability of Pacific Decadal
Variability. Current Climate Change Reports, 4(2), 128–144, doi:10.1007/
s40641-018-0090-5.
Lorenz, D.J. and D.L. Hartmann, 2003: Eddy–Zonal Flow Feedback in the Northern
Hemisphere Winter. Journal of Climate, 16(8), 1212–1227, doi:10.1175/1520-
0442(2003)16<1212:effitn>2.0.co;2.
Losada, T., B. Rodríguez-Fonseca, and F. Kucharski, 2012: Tropical influence on
the summer Mediterranean climate. Atmospheric Science Letters, 13(1),
36–42, doi:10.1002/asl.359.
Losada, T. et al., 2010: A multi-model approach to the Atlantic Equatorial mode:
impact on the West African monsoon. Climate Dynamics, 35(1), 29–43,
doi:10.1007/s00382-009-0625-5.
Lu, Z., Z. Liu, J. Zhu, and K.M. Cobb, 2018: A Review of Paleo El Niño-Southern
Oscillation. Atmosphere, 9(4), 130, doi:10.3390/atmos9040130.
Lübbecke, J.F., N.J. Burls, C.J.C. Reason, and M.J. McPhaden, 2014: Variability
in the South Atlantic Anticyclone and the Atlantic Niño Mode. Journal of
Climate, 27(21), 8135–8150, doi:10.1175/jcli-d-14-00202.1.
Lübbecke, J.F. et al., 2018: Equatorial Atlantic variability – Modes, mechanisms,
and global teleconnections. WIREs Climate Change, 9(4), e527, doi:10.1002/
wcc.527.
Lukens, K.E., S.B. Feldstein, C. Yoo, and S. Lee, 2017: The dynamics of the
extratropical response to Madden–Julian Oscillation convection. Quarterly
Journal of the Royal Meteorological Society, 143(703), 1095–1106,
doi:10.1002/qj.2993.
Luo, J.-J., W. Sasaki, and Y. Masumoto, 2012: Indian Ocean warming modulates
Pacific climate change. Proceedings of the National Academy of Sciences,
109(46), 18701–18706, doi:10.1073/pnas.1210239109.
Luterbacher, J., 2001: Extending North Atlantic Oscillation reconstructions
back to 1500. Atmospheric Science Letters, 2(1–4), 114–124, doi:10.1006/
asle.2001.0044.
MacDonald, G.M. and R.A. Case, 2005: Variations in the Pacific Decadal
Oscillation over the past millennium. Geophysical Research Letters, 32(8),
L08703, doi:10.1029/2005gl022478.
Madden, R.A., 1986: Seasonal Variations of the 40–50 Day Oscillation in
the Tropics. Journal of the Atmospheric Sciences, 43(24), 3138–3158,
doi:10.1175/1520-0469(1986)043<3138:svotdo>2.0.co;2.
2187Modes of Variability Anne x IV
AIV
Madden, R.A. and P.R. Julian, 1994: Observations of the 40–50-Day Tropical
Oscillation – A Review. Monthly Weather Review, 122(5), 814–837,
doi:10.1175/1520-0493(1994)122<0814:ootdto>2.0.co;2.
Maloney, E.D. and D.L. Hartmann, 2000: Modulation of Eastern North Pacific
Hurricanes by the Madden–Julian Oscillation. Journal of Climate, 13(9),
1451–1460, doi:10.1175/1520-0442(2000)013<1451:moenph>2.0.co;2.
Maloney, E.D. and J. Shaman, 2008: Intraseasonal Variability of the West
African Monsoon and Atlantic ITCZ. Journal of Climate, 21(12), 2898–2918,
doi:10.1175/2007jcli1999.1.
Manatsa, D., C. Mudavanhu, T.D. Mushore, and E. Mavhura, 2016: Linking major
shifts in East Africa ’short rains’ to the Southern Annular Mode. International
Journal of Climatology, 36(4), 1590–1599, doi:10.1002/joc.4443.
Manatsa, D., Y. Morioka, S.K. Behera, T. Yamagata, and C.H. Matarira, 2013: Link
between Antarctic ozone depletion and summer warming over southern
Africa. Nature Geoscience, 6(11), 934–939, doi:10.1038/ngeo1968.
Mann, M.E., B.A. Steinman, and S.K. Miller, 2020: Absence of internal
multidecadal and interdecadal oscillations in climate model simulations.
Nature Communications, 11(1), 49, doi:10.1038/s41467-019-13823-w.
Mann, M.E. et al., 2009: Global Signatures and Dynamical Origins of the Little
Ice Age and Medieval Climate Anomaly. Science, 326(5957), 1256–1260,
doi:10.1126/science.1177303.
Mantua, N.J. and S.R. Hare, 2002: The Pacific Decadal Oscillation. Journal of
Oceanography, 58(1), 35–44, doi:10.1023/a:1015820616384.
Mantua, N.J., S.R. Hare, Y. Zhang, J.M. Wallace, and R.C. Francis, 1997: A Pacific
Interdecadal Climate Oscillation with Impacts on Salmon Production. Bulletin
of the American Meteorological Society, 78(6), 1069–1080, doi:10.1175/
1520-0477(1997)078<1069:apicow>2.0.co;2.
Mapes, B. and R. Neale, 2011: Parameterizing Convective Organization to
Escape the Entrainment Dilemma. Journal of Advances in Modeling Earth
Systems, 3(2), M06004, doi:10.1029/2011ms000042.
Mariani, M. and M.S. Fletcher, 2016: The Southern Annular Mode determines
interannual and centennial-scale fire activity in temperate southwest
Tasmania, Australia. Geophysical Research Letters, 43(4), 1702–1709,
doi:10.1002/2016gl068082.
Marshall, G.J., 2003: Trends in the Southern Annular Mode from Observations
and Reanalyses. Journal of Climate, 16(24), 4134–4143, doi:10.1175/1520-
0442(2003)016<4134:titsam>2.0.co;2.
Marshall, G.J., A. Orr, and J. Turner, 2013: A Predominant Reversal in the
Relationship between the SAM and East Antarctic Temperatures during
theTwenty-First Century. Journal of Climate, 26(14), 5196–5204, doi:10.1175/
jcli-d-12-00671.1.
Marshall, G.J., D.W.J. Thompson, and M.R. Broeke, 2017: The Signature of Southern
Hemisphere Atmospheric Circulation Patterns in Antarctic Precipitation.
Geophysical Research Letters, 44(22), 11580–11589, doi:10.1002/2017gl
075998.
Martin, E.R. and C.D. Thorncroft, 2014: The impact of the AMO on the West
African monsoon annual cycle. Quarterly Journal of the Royal Meteorological
Society, 140(678), 31–46, doi:10.1002/qj.2107.
Martín-Rey, M., B. Rodríguez-Fonseca, and I. Polo, 2015: Atlantic opportunities
for ENSO prediction. Geophysical Research Letters, 42(16), 6802–6810,
doi:10.1002/2015gl065062.
Martín-Rey, M., B. Rodríguez-Fonseca, I. Polo, and F. Kucharski, 2014: On the
Atlantic–Pacific Niños connection: a multidecadal modulated mode. Climate
Dynamics, 43(11), 3163–3178, doi:10.1007/s00382-014-2305-3.
Martín-Rey, M., I. Polo, B. Rodríguez-Fonseca, T. Losada, and A. Lazar, 2018: Is
There Evidence of Changes in Tropical Atlantic Variability Modes under AMO
Phases in the Observational Record? Journal of Climate, 31(2), 515–536,
doi:10.1175/jcli-d-16-0459.1.
Matthews, A.J., B.J. Hoskins, and M. Masutani, 2004: The global response to
tropical heating in the Madden–Julian oscillation during the northern winter.
Quarterly Journal of the Royal Meteorological Society, 130(601), 1991–2011,
doi:10.1256/qj.02.123.
Matthews, T., C. Murphy, R.L. Wilby, and S. Harrigan, 2014: Stormiest winter
on record for Ireland and UK. Nature Climate Change, 4(9), 738–740,
doi:10.1038/nclimate2336.
Mauri, A., B.A.S. Davis, P.M. Collins, and J.O. Kaplan, 2014: The influence of
atmospheric circulation on the mid-Holocene climate of Europe: A data–
model comparison. Climate of the Past, 10(5), 1925–1938, doi:10.5194/
cp-10-1925-2014.
McGee, D., A. Donohoe, J. Marshall, and D. Ferreira, 2014: Changes in ITCZ
location and cross-equatorial heat transport at the Last Glacial Maximum,
Heinrich Stadial 1, and the mid-Holocene. Earth and Planetary Science
Letters, 390, 69–79, doi:10.1016/j.epsl.2013.12.043.
McGregor, S., A. Timmermann, and O. Timm, 2010: A unified proxy for ENSO
and PDO variability since 1650. Climate of the Past, 6(1), 1–17, doi:10.5194/
cp-6-1-2010.
McGregor, S. et al., 2014: Recent Walker circulation strengthening and Pacific
cooling amplified by Atlantic warming. Nature Climate Change, 4(10),
888–892, doi:10.1038/nclimate2330.
Meehl, G.A. and A. Hu, 2006: Megadroughts in the Indian Monsoon Region and
Southwest North America and a Mechanism for Associated Multidecadal
Pacific Sea Surface Temperature Anomalies. Journal of Climate, 19(9),
1605–1623, doi:10.1175/jcli3675.1.
Meehl, G.A. and H. Teng, 2014: Regional precipitation simulations for the
mid-1970s shift and early-2000s hiatus. Geophysical Research Letters,
41(21), 7658–7665, doi:10.1002/2014gl061778.
Meehl, G.A., J.M. Arblaster, and J. Loschnigg, 2003: Coupled Ocean–Atmosphere
Dynamical Processes in the Tropical Indian and Pacific Oceans and the TBO.
Journal of Climate, 16(13), 2138–2158, doi:10.1175/2767.1.
Mellado-Cano, J., D. Barriopedro, R. García-Herrera, R.M. Trigo, and A. Hernández,
2019: Examining the North Atlantic Oscillation, East Atlantic pattern and
jet variability since 1685. Journal of Climate, 32, 6285–6298, doi:10.1175/
jcli-d-18-0135.1.
Meyers, G., P. McIntosh, L. Pigot, and M. Pook, 2007: The Years of El Niño,
La Niña, and Interactions with the Tropical Indian Ocean. Journal of Climate,
20(13), 2872–2880, doi:10.1175/jcli4152.1.
Michel, S. et al., 2020: Reconstructing climatic modes of variability from proxy
records using ClimIndRec version 1.0. Geoscientific Model Development,
13(2), 841–858, doi:10.5194/gmd-13-841-2020.
Miyakawa, T. et al., 2014: Madden–Julian Oscillation prediction skill of a new-
generation global model demonstrated using a supercomputer. Nature
Communications, 5(1), 3769, doi:10.1038/ncomms4769.
Mizuta, R. et al., 2012: Climate Simulations Using MRI-AGCM3.2 with 20-km
Grid. Journal of the Meteorological Society of Japan: Series II, 90A, 233–258,
doi:10.2151/jmsj.2012-a12.
Mochizuki,T., M. Kimoto, M.Watanabe,Y. Chikamoto, and M. Ishii, 2016: Interbasin
effects of the Indian Ocean on Pacific decadal climate change. Geophysical
Research Letters, 43(13), 7168–7175, doi:10.1002/2016gl069940.
Mohino, E. et al., 2011: Changes in the interannual SST-forced signals on West
African rainfall. AGCM intercomparison. Climate Dynamics, 37(9–10),
1707–1725, doi:10.1007/s00382-011-1093-2.
Monks, S.A., S.R. Arnold, and M.P. Chipperfield, 2012: Evidence for El Niño-
Southern Oscillation (ENSO) influence on Arctic CO interannual variability
through biomass burning emissions. Geophysical Research Letters, 39(14),
L14804, doi:10.1029/2012gl052512.
Moon, J.-Y., B. Wang, K.-J. Ha, and J.-Y. Lee, 2013: Teleconnections associated with
Northern Hemisphere summer monsoon intraseasonal oscillation. Climate
Dynamics, 40(11–12), 2761–2774, doi:10.1007/s00382-012-1394-0.
Moore, G.W.K., J. Halfar, H. Majeed, W. Adey, and A. Kronz, 2017: Amplification
of the Atlantic Multidecadal Oscillation associated with the onset of the
industrial-era warming. Scientific Reports, 7(1), 40861, doi:10.1038/srep
40861.
Moreno, P.I. et al., 2018: Onset and Evolution of Southern Annular Mode-Like
Changes at Centennial Timescale. Scientific Reports, 8(1), 3458, doi:10.1038/
s41598-018-21836-6.
2188Annex IV Modes of Variability
AIV
Neelin, J.D. et al., 1998: ENSO theory. Journal of Geophysical Research: Oceans,
103(C7), 14261–14290, doi:10.1029/97jc03424.
Newman, M. et al., 2016: The Pacific Decadal Oscillation, Revisited. Journal of
Climate, 29(12), 4399–4427, doi:10.1175/jcli-d-15-0508.1.
Nicolì, D., A. Bellucci, D. Iovino, P. Ruggieri, and S. Gualdi, 2020: The impact of
the AMV on Eurasian summer hydrological cycle. Scientific Reports, 10(1),
14444, doi:10.1038/s41598-020-71464-2.
Nidheesh, A.G. et al., 2017: Influence of ENSO on the Pacific decadal oscillation
in CMIP models. Climate Dynamics, 49(9–10), 3309–3326, doi:10.1007/
s00382-016-3514-8.
Niedermeyer, E.M., A.L. Sessions, S.J. Feakins, and M. Mohtadi, 2014:
Hydroclimate of the western Indo-Pacific Warm Pool during the past
24,000 years. Proceedings of the National Academy of Sciences, 111(26),
9402–9406, doi:10.1073/pnas.1323585111.
Nnamchi, H.C., M. Latif, N.S. Keenlyside, J. Kjellsson, and I. Richter, 2021:
Diabatic heating governs the seasonality of the Atlantic Niño. Nature
Communications, 12(1), 376, doi:10.1038/s41467-020-20452-1.
Nnamchi, H.C. et al., 2015: Thermodynamic controls of the Atlantic Niño.
Nature Communications, 6(1), 8895, doi:10.1038/ncomms9895.
Nobre, P. and J. Srukla, 1996: Variations of Sea Surface Temperature, Wind
Stress, and Rainfall over the Tropical Atlantic and South America. Journal of
Climate, 9(10), 2464–2479, doi:10.1175/1520-0442(1996)009<2464:voss
tw>2.0.co;2.
O’Reilly, C.H., S. Minobe, A. Kuwano-Yoshida, and T. Woollings, 2017: The Gulf
Stream influence on wintertime North Atlantic jet variability. Quarterly Journal
of the Royal Meteorological Society, 143(702), 173–183, doi:10.1002/qj.
2907.
Olsen, J., N.J. Anderson, and M.F. Knudsen, 2012: Variability of the North Atlantic
Oscillation over the past 5,200 years. Nature Geoscience, 5(11), 808–812,
doi:10.1038/ngeo1589.
Ortega, P. et al., 2015: A model-tested North Atlantic Oscillation reconstruction for
the past millennium. Nature, 523(7558), 71–74, doi:10.1038/nature14518.
Pan, Y.H. and A.H. Oort, 1983: Global Climate Variations Connected with Sea
Surface Temperature Anomalies in the Eastern Equatorial Pacific Ocean for the
1958–73 Period. Monthly Weather Review, 111(6), 1244–1258, doi:10.1175/
1520-0493(1983)111<1244:gcvcws>2.0.co;2.
Patricola, C.M., R. Saravanan, and P. Chang, 2014: The Impact of the El Niño-
Southern Oscillation and Atlantic Meridional Mode on Seasonal Atlantic
Tropical Cyclone Activity. Journal of Climate, 27(14), 5311–5328, doi:10.1175/
jcli-d-13-00687.1.
Peings, Y. and G. Magnusdottir, 2014: Forcing of the wintertime atmospheric
circulation by the multidecadal fluctuations of the North Atlantic ocean.
Environmental Research Letters, 9(3), 034018, doi:10.1088/1748-9326/9/
3/034018.
Peng, S., W.A. Robinson, S. Li, and M.P. Hoerling, 2005: Tropical Atlantic SST
Forcing of Coupled North Atlantic Seasonal Responses. Journal of Climate,
18(3), 480–496, doi:10.1175/jcli-3270.1.
Pepler, A., B. Timbal, C. Rakich, and A. Coutts-Smith, 2014: Indian Ocean Dipole
Overrides ENSO’s Influence on Cool Season Rainfall across the Eastern
Seaboard of Australia. Journal of Climate, 27(10), 3816–3826, doi:10.1175/
jcli-d-13-00554.1.
Pepler, A.S., 2016: Seasonal climate summary southern hemisphere (summer
2015–16): strong El Niño peaks and begins to weaken. Journal of Southern
Hemisphere Earth Systems Science, 66, 361–379, doi:10.22499/3.6604.001.
Philander, S.G.H., 1983: El Niño Southern Oscillation phenomena. Nature,
302(5906), 295–301, doi:10.1038/302295a0.
Philander, S.G.H., 1990: El Niño, La Niña, and the Southern Oscillation.
Academic Press, San Diego, CA, USA, 293 pp.
Pillai, P.A., R.C. Nair, and C. Vidhya, 2019: Recent changes in the prominent
modes of Indian Ocean dipole in response to the tropical Pacific Ocean
SST patterns. Theoretical and Applied Climatology, 138(1–2), 941–951,
doi:10.1007/s00704-019-02875-z.
Pohl, B. and P. Camberlin, 2006: Influence of the Madden–Julian Oscillation
on East African rainfall. I: Intraseasonal variability and regional dependency.
Quarterly Journal of the Royal Meteorological Society, 132(621), 2521–2539,
doi:10.1256/qj.05.104.
Polo, I., B. Rodríguez-Fonseca, T. Losada, and J. García-Serrano, 2008: Tropical
Atlantic Variability Modes (1979–2002). Part I: Time-Evolving SST Modes
Related to West African Rainfall. Journal of Climate, 21(24), 6457–6475,
doi:10.1175/2008jcli2607.1.
Polo, I., A. Lazar, B. Rodriguez-Fonseca, and J. Mignot, 2015: Growth and
decay of the equatorial Atlantic SST mode by means of closed heat budget
in a coupled general circulation model. Frontiers in Earth Science, 3, 37,
doi:10.3389/feart.2015.00037.
Pottapinjara, V., M.S. Girishkumar, M. Ravichandran, and R. Murtugudde, 2014:
Influence of the Atlantic zonal mode on monsoon depressions in the Bay of
Bengal during boreal summer. Journal of Geophysical Research: Atmospheres,
119(11), 6456–6469, doi:10.1002/2014jd021494.
Pottapinjara, V., M.S. Girishkumar, S. Sivareddy, M. Ravichandran, and
R. Murtugudde, 2016: Relation between the upper ocean heat content
in the equatorial Atlantic during boreal spring and the Indian monsoon
rainfall during June–September. International Journal of Climatology, 36(6),
2469–2480, doi:10.1002/joc.4506.
Power, S. and R. Colman, 2006: Multi-year predictability in a coupled general
circulation model. Climate Dynamics, 26(2–3), 247–272, doi:10.1007/
s00382-005-0055-y.
Power, S., T. Casey, C. Folland, A. Colman, and V. Mehta, 1999: Inter-decadal
modulation of the impact of ENSO on Australia. Climate Dynamics, 15(5),
319–324, doi:10.1007/s003820050284.
Qasmi, S., C. Cassou, and J. Boé, 2020: Teleconnection Processes Linking the
Intensity of the Atlantic Multidecadal Variability to the Climate Impacts
over Europe in Boreal Winter. Journal of Climate, 33(7), 2681–2700,
doi:10.1175/jcli-d-19-0428.1.
Prabhu, A., R. Kripalani, J. Oh, and B. Preethi, 2017: Can the Southern annular
mode influence the Korean summer monsoon rainfall? Asia-Pacific Journal
of Atmospheric Sciences, 53(2), 217–228, doi:10.1007/s13143-017-0029-0.
Qiu, B., N. Schneider, and S. Chen, 2007: Coupled Decadal Variability in the
North Pacific: An Observationally Constrained Idealized Model. Journal of
Climate, 20(14), 3602–3620, doi:10.1175/jcli4190.1.
Ratnam, J., S.K. Behera, Y. Masumoto, and T. Yamagata, 2014: Remote Effects of
El Niño and Modoki Events on the Austral Summer Precipitation of Southern
Africa. Journal of Climate, 27(10), 3802–3815, doi:10.1175/jcli-d-13-00431.1.
Raut, B.A., C. Jakob, and M.J. Reeder, 2014: Rainfall Changes over Southwestern
Australia and Their Relationship to the Southern Annular Mode and ENSO.
Journal of Climate, 27(15), 5801–5814, doi:10.1175/jcli-d-13-00773.1.
Richter, I. et al., 2013: Multiple causes of interannual sea surface temperature
variability in the equatorial Atlantic Ocean. Nature Geoscience, 6(1), 43–47,
doi:10.1038/ngeo1660.
Richter, I. et al., 2014: What controls equatorial Atlantic winds in boreal spring?
Climate Dynamics, 43(11), 3091–3104, doi:10.1007/s00382-014-2170-0.
Rimbu, N., G. Lohmann, and M. Ionita, 2014: Interannual to multidecadal Euro-
Atlantic blocking variability during winter and its relationship with extreme
low temperatures in Europe. Journal of Geophysical Research: Atmospheres,
119(24), 13621–13636, doi:10.1002/2014jd021983.
Risbey, J.S., M.J. Pook, P.C. McIntosh, M.C. Wheeler, and H.H. Hendon, 2009:
On the Remote Drivers of Rainfall Variability in Australia. Monthly Weather
Review, 137(10), 3233–3253, doi:10.1175/2009mwr2861.1.
Rivière, G. and M. Drouard, 2015: Understanding the contrasting North
Atlantic Oscillation anomalies of the winters of 2010 and 2014. Geophysical
Research Letters, 42(16), 6868–6875, doi:10.1002/2015gl065493.
Rodrigues, R.R., E.J.D. Campos, and R. Haarsma, 2015: The Impact of ENSO
on the South Atlantic Subtropical Dipole Mode. Journal of Climate, 28(7),
2691–2705, doi:10.1175/jcli-d-14-00483.1.
2189Modes of Variability Anne x IV
AIV
Rodríguez-Fonseca, B. et al., 2009: Are Atlantic Niños enhancing Pacific ENSO
events in recent decades? Geophysical Research Letters, 36(20), L20705,
doi:10.1029/2009gl040048.
Rodríguez-Morata, C., H.F. Díaz, J.A. Ballesteros-Canovas, M. Rohrer, and M.
Stoffel, 2019: The anomalous 2017 coastal El Niño event in Peru. Climate
Dynamics, 52(9), 5605–5622, doi: 10.1007/s00382-018-4466-y.
Roxy, M.K. et al., 2019: Twofold expansion of the Indo-Pacific warm pool warps
the MJO life cycle. Nature, 575(7784), 647–651, doi:10.1038/s41586-019-
1764-4.
Ruiz-Barradas, A., J.A. Carton, and S. Nigam, 2000: Structure of Interannual-
to-Decadal Climate Variability in the Tropical Atlantic Sector. Journal of
Climate, 13(18), 3285–3297, doi:10.1175/1520-0442(2000)013<3285:so
itdc>2.0.co;2.
Ruprich-Robert, Y. et al., 2017: Assessing the Climate Impacts of the Observed
Atlantic Multidecadal Variability Using the GFDL CM2.1 and NCAR CESM1
Global Coupled Models. Journal of Climate, 30(8), 2785–2810, doi:10.1175/
jcli-d-16-0127.1.
Sabeerali, C.T., R.S. Ajayamohan, and S.A. Rao, 2019: Loss of predictive skill of
indian summer monsoon rainfall in NCEP CFSv2 due to misrepresentation
ofAtlantic zonal mode. Climate Dynamics, 52(7–8), 4599–4619, doi:10.1007/
s00382-018-4390-1.
Saji, N.H. and T. Yamagata, 2003a: Possible impacts of Indian Ocean Dipole
mode events on global climate. Climate Research, 25, 151–169, doi:10.3354/
cr025151.
Saji, N.H. and T. Yamagata, 2003b: Structure of SST and Surface Wind Variability
during Indian Ocean Dipole Mode Events: COADS Observations. Journal of
Climate, 16(16), 2735–2751, doi:10.1175/1520-0442(2003)016<2735:so
sasw>2.0.co;2.
Saji, N.H., S.-P. Xie, and T. Yamagata, 2006: Tropical Indian Ocean Variability
in the IPCC Twentieth-Century Climate Simulations. Journal of Climate,
19(17), 4397–4417, doi:10.1175/jcli3847.1.
Saji, N.H., B.N. Goswami, P.N. Vinayachandran, and T. Yamagata, 1999:
A dipole mode in the tropical Indian Ocean. Nature, 401(6751), 360–363,
doi:10.1038/43854.
Sanchez-Gomez, E., L. Terray, and B. Joly, 2008: Intra-seasonal atmospheric
variability and extreme precipitation events in the European-Mediterranean
region. Geophysical Research Letters, 35(15), L15708, doi:10.1029/2008gl
034515.
Schneider, N. and B.D. Cornuelle, 2005: The Forcing of the Pacific Decadal
Oscillation. Journal of Climate, 18(21), 4355–4373, doi:10.1175/jcli3527.1.
Schott, F.A., S.-P. Xie, and J.P. McCreary, 2009: Indian Ocean circulation and
climate variability. Reviews of Geophysics, 47(1), RG1002, doi:10.1029/2007
rg000245.
Screen, J.A. et al., 2018: Consistency and discrepancy in the atmospheric
response to Arctic sea-ice loss across climate models. Nature Geoscience,
11(3), 155–163, doi:10.1038/s41561-018-0059-y.
Seager, R. et al., 2000: Causes of Atlantic Ocean Climate Variability between
1958 and 1998. Journal of Climate, 13(16), 2845–2862, doi:10.1175/1520-
0442(2000)013<2845:coaocv>2.0.co;2.
Sen Gupta, A. and M.H. England, 2006: Coupled Ocean–Atmosphere–Ice
Response to Variations in the Southern Annular Mode. Journal of Climate,
19(18), 4457–4486, doi:10.1175/jcli3843.1.
Shakun, J.D. and J. Shaman, 2009: Tropical origins of North and South
Pacific decadal variability. Geophysical Research Letters, 36(19), L19711,
doi:10.1029/2009gl040313.
Shen, C., W.-C. Wang, W. Gong, and Z. Hao, 2006: A Pacific Decadal Oscillation
record since 1470 AD reconstructed from proxy data of summer rainfall over
eastern China. Geophysical Research Letters, 33(3), L03702, doi:10.1029/
2005gl024804.
Silvestri, G.E. and C.S. Vera, 2003: Antarctic Oscillation signal on precipitation
anomalies over southeastern South America. Geophysical Research Letters,
30(21), 2115, doi:10.1029/2003gl018277.
Simpson, I.R., C. Deser, K.A. McKinnon, and E.A. Barnes, 2018: Modeled and
Observed Multidecadal Variability in the North Atlantic Jet Stream and Its
Connection to Sea Surface Temperatures. Journal of Climate, 31(20),
8313–8338, doi:10.1175/jcli-d-18-0168.1.
Singh, H.K.A., G.J. Hakim, R. Tardif, J. Emile-Geay, and D.C. Noone, 2018: Insights
into Atlantic multidecadal variability using the Last Millennium Reanalysis
framework. Climate of the Past, 14(2), 157–174, doi:10.5194/cp-14-157-
2018.
Sjolte, J. et al., 2018: Solar and volcanic forcing of North Atlantic climate
inferred from a process-based reconstruction. Climate of the Past, 14(8),
1179–1194, doi:10.5194/cp-14-1179-2018.
Smith, D.M., A.A. Scaife, and B.P. Kirtman, 2012: What is the current state of
scientific knowledge with regard to seasonal and decadal forecasting?
Environmental Research Letters, 7(1), 015602, doi:10.1088/1748-9326/7/1/
015602.
Spence, P. et al., 2014: Rapid subsurface warming and circulation changes of
Antarctic coastal waters by poleward shifting winds. Geophysical Research
Letters, 41(13), 4601–4610, doi:10.1002/2014gl060613.
Spensberger, C., M.J. Reeder, T. Spengler, and M. Patterson, 2020: The Connection
between the Southern Annular Mode and a Feature-Based Perspective on
Southern Hemisphere Midlatitude Winter Variability. Journal of Climate,
33(1), 115–129, doi:10.1175/jcli-d-19-0224.1.
Sperber, K.R. and H. Annamalai, 2008: Coupled model simulations of boreal
summer intraseasonal (30–50 day) variability, Part 1: Systematic errors and
caution on use of metrics. Climate Dynamics, 31(2–3), 345–372, doi:10.1007/
s00382-008-0367-9.
Sperber, K.R. et al., 2013: The Asian summer monsoon: an intercomparison of
CMIP5 vs. CMIP3 simulations of the late 20th century. Climate Dynamics,
41(9–10), 2711–2744, doi:10.1007/s00382-012-1607-6.
Stan, C. et al., 2017: Review of Tropical–Extratropical Teleconnections on
Intraseasonal Time Scales. Reviews of Geophysics, 55(4), 902–937,
doi:10.1002/2016rg000538.
Steinman, B.A., M.E. Mann, and S.K. Miller, 2015: Atlantic and Pacific
multidecadal oscillations and Northern Hemisphere temperatures. Science,
347(6225), 988–991, doi:10.1126/science.1257856.
Stephenson, D.B., H. Wanner, S. Brönnimann, and J. Luterbacher, 2003:
The History of Scientific Research on the North Atlantic Oscillation. In: The
North Atlantic Oscillation: Climatic Significance and Environmental Impact
[Hurrell, J.W., Y. Kushnir, G. Ottersen, and M. Visbeck (eds.)]. pp. 37–50,
doi:10.1029/134gm02.
Stuecker, M.F., 2018: Revisiting the Pacific Meridional Mode. Scientific Reports,
8(1), 3216, doi:10.1038/s41598-018-21537-0.
Stuecker, M.F. et al., 2017: Revisiting ENSO/Indian Ocean Dipole phase
relationships. Geophysical Research Letters, 44(5), 2481–2492, doi:10.1002/
2016gl072308.
Subramanian, A.C. et al., 2019: Ocean Observations to Improve Our
Understanding, Modeling, and Forecasting of Subseasonal-to-Seasonal
Variability. Frontiers in Marine Science, 6, 427, doi:10.3389/fmars.2019.00427.
Sutton, R.T. and B. Dong, 2012: Atlantic Ocean influence on a shift in European
climate in the 1990s. Nature Geoscience, 5(11), 788–792, doi:10.1038/
ngeo1595.
Sutton, R.T. et al., 2018: Atlantic Multidecadal Variability and the U.K. ACSIS
Program. Bulletin of the American Meteorological Society, 99(2), 415–425,
doi:10.1175/bams-d-16-0266.1.
Svendsen, L., S. Hetzinger, N. Keenlyside, and Y. Gao, 2014: Marine-based
multiproxy reconstruction of Atlantic multidecadal variability. Geophysical
Research Letters, 41(4), 1295–1300, doi:10.1002/2013gl059076.
Swart, N.C., J.C. Fyfe, N. Gillett, and G.J. Marshall, 2015: Comparing Trends in
the Southern Annular Mode and Surface Westerly Jet. Journal of Climate,
28(22), 8840–8859, doi:10.1175/jcli-d-15-0334.1.
Swingedouw, D. et al., 2017: Impact of explosive volcanic eruptions on the
main climate variability modes. Global and Planetary Change, 150, 24–45,
doi:10.1016/j.gloplacha.2017.01.006.
2190Annex IV Modes of Variability
AIV
Taguchi, B. et al., 2007: Decadal Variability of the Kuroshio Extension:
Observations and an Eddy-Resolving Model Hindcast. Journal of Climate,
20(11), 2357–2377, doi:10.1175/jcli4142.1.
Takahashi, K. and A.G. Martínez, 2019: The very strong coastal El Niño in
1925 in the far-eastern Pacific. Climate Dynamics, 52(12), 7389–7415,
doi:10.1007/s00382-017-3702-1.
Tandon, N.F. and P.J. Kushner, 2015: Does External Forcing Interfere with the
AMOC’s Influence on North Atlantic Sea Surface Temperature? Journal of
Climate, 28(16), 6309–6323, doi:10.1175/jcli-d-14-00664.1.
Taschetto, A.S., C.C. Ummenhofer, A. Sen Gupta, and M.H. England,
2009: Effect of anomalous warming in the central Pacific on the
Australian monsoon. Geophysical Research Letters, 36(12), L12704,
doi:10.1029/2009gl038416.
Taschetto, A.S., A. Sen Gupta, H.H. Hendon, C.C. Ummenhofer, and M.H.England,
2011: The Contribution of Indian Ocean Sea Surface Temperature Anomalies
on Australian Summer Rainfall during El Niño Events. Journal of Climate,
24(14), 3734–3747, doi:10.1175/2011jcli3885.1.
Taschetto, A.S. et al., 2020: ENSO Atmospheric Teleconnections. In: El Niño
Southern Oscillation in a Changing Climate [McPhaden, M.J., A. Santoso,
and W. Cai (eds.)]. American Geophysical Union (AGU), pp. 309–335,
doi:10.1002/9781119548164.ch14.
Terray, L., 2012: Evidence for multiple drivers of North Atlantic multi-
decadal climate variability. Geophysical Research Letters, 39(19), L19712,
doi:10.1029/2012gl053046.
Thompson, D.W.J. and J.M. Wallace, 1998: The Arctic oscillation signature in
the wintertime geopotential height and temperature fields. Geophysical
Research Letters, 25(9), 1297–1300, doi:10.1029/98gl00950.
Thompson, D.W.J. and J.M. Wallace, 2000: Annular Modes in the Extratropical
Circulation. Part I: Month-to-Month Variability. Journal of Climate, 13(5),
1000–1016, doi:10.1175/1520-0442(2000)013<1000:amitec>2.0.co;2.
Thompson, D.W.J., J.M. Wallace, and G.C. Hegerl, 2000: Annular Modes in the
Extratropical Circulation. Part II: Trends. Journal of Climate, 13(5), 1018–1036,
doi:10.1175/1520-0442(2000)013<1018:amitec>2.0.co;2.
Tian, B., D.E. Waliser, R.A. Kahn, and S. Wong, 2011: Modulation of Atlantic
aerosols by the Madden–Julian Oscillation. Journal of Geophysical Research:
Atmospheres, 116(D15), D15108, doi:10.1029/2010jd015201.
Tian, B. et al., 2007: Intraseasonal variations of the tropical total ozone and
their connection to the Madden–Julian Oscillation. Geophysical Research
Letters, 34(8), L08704, doi:10.1029/2007gl029451.
Timmermann, A. et al., 2018: El Niño-Southern Oscillation complexity. Nature,
559(7715), 535–545, doi:10.1038/s41586-018-0252-6.
Ting, M., Y. Kushnir, R. Seager, and C. Li, 2009: Forced and Internal Twentieth-
Century SST Trends in the North Atlantic. Journal of Climate, 22(6),
1469–1481, doi:10.1175/2008jcli2561.1.
Tokinaga, H. and Y. Tanimoto, 2004: Seasonal transition of SST anomalies in
the tropical Indian Ocean during El Niño and Indian Ocean dipole years.
Journal of the Meteorological Society of Japan: Series II, 82(4), 1007–1018,
doi:10.2151/jmsj.2004.1007.
Tokinaga, H., I. Richter, and Y. Kosaka, 2019: ENSO Influence on the Atlantic
Niño, Revisited: Multi-Year versus Single-Year ENSO Events. Journal of
Climate, 32(14), 4585–4600, doi:10.1175/jcli-d-18-0683.1.
Torralba, V., B. Rodríguez-Fonseca, E. Mohino, and T. Losada, 2015: The
non-stationary influence of the Atlantic and Pacific Niños on North Eastern
South American rainfall. Frontiers in Earth Science, 3, 55, doi:10.3389/feart.
2015.00055.
Tozuka, T., J.-J. Luo, S. Masson, and T. Yamagata, 2007: Decadal Modulations
of the Indian Ocean Dipole in the SINTEX-F1 Coupled GCM. Journal of
Climate, 20(13), 2881–2894, doi:10.1175/jcli4168.1.
Trenberth, K.E. and D.P. Stepaniak, 2001: Indices of El Niño Evolution. Journal of
Climate, 14(8), 1697–1701, doi:10.1175/1520-0442(2001)014<1697:lioeno
>2.0.co;2.
Trenberth, K.E. and D.J. Shea, 2006: Atlantic hurricanes and natural variability
in 2005. Geophysical Research Letters, 33(12), L12704, doi:10.1029/2006gl
026894.
Trenberth, K.E., J.M. Caron, D.P. Stepaniak, and S. Worley, 2002: Evolution of
El Niño-Southern Oscillation and global atmospheric surface temperatures.
Journal of Geophysical Research: Atmospheres, 107(D8), 4065, doi:10.1029/
2000jd000298.
Troup, A.J., 1965: The ‘southern oscillation’. Quarterly Journal of the Royal
Meteorological Society, 91(390), 490–506, doi:10.1002/qj.49709139009.
Tung, K.-K. and J. Zhou, 2013: Using data to attribute episodes of warming
and cooling in instrumental records. Proceedings of the National Academy
of Sciences, 110(6), 2058–2063, doi:10.1073/pnas.1212471110.
Tung, K.-K., X. Chen, J. Zhou, and K.-F. Li, 2019: Interdecadal variability in
pan-Pacific and global SST, revisited. Climate Dynamics, 52(3), 2145–2157,
doi:10.1007/s00382-018-4240-1.
Ueda, H., K. Miwa, and Y. Kamae, 2018: Seasonal Modulation of Tropical
Cyclone Occurrence Associated with Coherent Indo-Pacific Variability during
Decaying Phase of El Niño. Journal of the Meteorological Society of Japan.
Series II, 96(4), 381–390, doi:10.2151/jmsj.2018-044.
Ulbrich, U. and M. Christoph, 1999: A shift of the NAO and increasing storm
track activity over Europe due to anthropogenic greenhouse gas forcing.
Climate Dynamics, 15(7), 551–559, doi:10.1007/s003820050299.
Vance, T.R., J.L. Roberts, C.T. Plummer, A.S. Kiem, and T.D. van Ommen, 2015:
Interdecadal Pacific variability and eastern Australian megadroughts over the
last millennium. Geophysical Research Letters, 42(1), 129–137, doi:10.1002/
2014gl062447.
Vera, C.S. and M. Osman, 2018: Activity of the Southern Annular Mode during
2015–2016 El Niño event and its impact on Southern Hemisphere climate
anomalies. International Journal of Climatology, 38(51), e1288–e1295,
doi:10.1002/joc.5419.
Verdon, D.C. and S.W. Franks, 2006: Long-term behaviour of ENSO: Interactions
with the PDO over the past 400 years inferred from paleoclimate records.
Geophysical Research Letters, 33(6), L06712, doi:10.1029/2005gl025052.
Villalba, R. et al., 2012: Unusual Southern Hemisphere tree growth patterns
induced by changes in the Southern Annular Mode. Nature Geoscience,
5(11), 793–798, doi:10.1038/ngeo1613.
Vimont, D.J. and J.P. Kossin, 2007: The Atlantic Meridional Mode and hurricane
activity. Geophysical Research Letters, 34(7), L07709, doi:10.1029/2007gl
029683.
Vitart, F., 2014: Evolution of ECMWF sub-seasonal forecast skill scores. Quarterly
Journal of the Royal Meteorological Society, 140(683), 1889–1899,
doi:10.1002/qj.2256.
Vitart, F., 2017: Madden–Julian Oscillation prediction and teleconnections in
the S2S database. Quarterly Journal of the Royal Meteorological Society,
143(706), 2210–2220, doi:10.1002/qj.3079.
Vitart, F. and A.W. Robertson, 2018: The sub-seasonal to seasonal prediction
project (S2S) and the prediction of extreme events. npj Climate and
Atmospheric Science, 1(1), 3, doi:10.1038/s41612-018-0013-0.
Vittal, H., G. Villarini, and W. Zhang, 2020: Early prediction of the Indian summer
monsoon rainfall by the Atlantic Meridional Mode. Climate Dynamics,
54(3–4), 2337–2346, doi:10.1007/s00382-019-05117-0.
Wainer, I., L.F. Prado, M. Khodri, and B. Otto-Bliesner, 2014: Reconstruction of
the South Atlantic Subtropical Dipole index for the past 12,000 years from
surface temperature proxy. Scientific Reports, 4(1), 5291, doi:10.1038/srep
05291.
Waliser, D. et al., 2009: MJO Simulation Diagnostics. Journal of Climate,
22(11), 3006–3030, doi:10.1175/2008jcli2731.1.
Waliser, D.E. et al., 2003: AGCM simulations of intraseasonal variability
associated with the Asian summer monsoon. Climate Dynamics, 21(5–6),
423–446, doi:10.1007/s00382-003-0337-1.
Wang, B. and J.C.L. Chan, 2002: How Strong ENSO Events Affect Tropical
Storm Activity over the Western North Pacific. Journal of Climate, 15(13),
1643–1658, doi:10.1175/1520-0442(2002)015<1643:hseeat>2.0.co;2.
2191Modes of Variability Anne x IV
AIV
Wang, B., R. Wu, and X. Fu, 2000: Pacific–East Asian Teleconnection: How Does
ENSO Affect East Asian Climate? Journal of Climate, 13(9), 1517–1536,
doi:10.1175/1520-0442(2000)013<1517:peathd>2.0.co;2.
Wang, B., B. Xiang, and J.-Y. Lee, 2013: Subtropical High predictability establishes
a promising way for monsoon and tropical storm predictions. Proceedings
of the National Academy of Sciences, 110(8), 2718–2722, doi:10.1073/
pnas.1214626110.
Wang, C., 2018: A review of ENSO theories. National Science Review, 5(6),
813–825, doi:10.1093/nsr/nwy104.
Wang, C., F. Kucharski, R. Barimalala, and A. Bracco, 2009: Teleconnections of the
tropical Atlantic to the tropical Indian and Pacific Oceans: A review of recent
findings. Meteorologische Zeitschrift, 18(4), 445–454, doi:10.1127/0941-
2948/2009/0394.
Wang, G. and H.H. Hendon, 2007: Sensitivity of Australian Rainfall to Inter–
El Niño Variations. Journal of Climate, 20(16), 4211–4226, doi:10.1175/
jcli4228.1.
Wang, J. et al., 2017: Internal and external forcing of multidecadal Atlantic
climate variability over the past 1,200 years. Nature Geoscience, 10(7),
512–517, doi:10.1038/ngeo2962.
Wang, L., J.-Y. Yu, and H. Paek, 2017: Enhanced biennial variability in the Pacific
due to Atlantic capacitor effect. Nature Communications, 8(1), 14887,
doi:10.1038/ncomms14887.
Ward, D.S., E. Shevliakova, S. Malyshev, J.-F. Lamarque, and A.T. Wittenberg, 2016:
Variability of fire emissions on interannual to multi-decadal timescales in
two Earth System models. Environmental Research Letters, 11(12), 125008,
doi:10.1088/1748-9326/11/12/125008.
Watanabe, M. and F.-F. Jin, 2002: Role of Indian Ocean warming in the
development of Philippine Sea anticyclone during ENSO. Geophysical
Research Letters, 29(10), 1478, doi:10.1029/2001gl014318.
Waugh, D.W., F. Primeau, T. DeVries, and M. Holzer, 2013: Recent Changes
in the Ventilation of the Southern Oceans. Science, 339(6119), 568–570,
doi:10.1126/science.1225411.
Weare, B.C., 1979: A Statistical Study of the Relationships between Ocean
Surface Temperatures and the Indian Monsoon. Journal of the Atmospheric
Sciences, 36(12), 2279–2291, doi:10.1175/1520-0469(1979)036<2279:as
sotr>2.0.co;2.