The Madden-Julian oscillation (MJO) is a convectively coupled 30-70 day (intraseasonal) tropical atmospheric mode that drives variations in global weather but which is poorly simulated in most atmospheric general circulation models. Over the past two decades, field campaigns and modeling experiments have suggested that tropical atmosphere-ocean interactions may sustain or amplify the pattern of enhanced and suppressed atmospheric convection that defines the MJO and encourage its eastward propagation through the Indian and Pacific Oceans. New observations collected during the past decade have advanced our understanding of the ocean response to atmospheric MJO forcing and the resulting intraseasonal sea surface temperature fluctuations. Numerous modeling studies have revealed a considerable impact of the mean state on MJO ocean-atmosphere coupled processes, as well as the importance of resolving the diurnal cycle of atmosphere-upper ocean interactions. New diagnostic methods provide insight to atmospheric variability and physical processes associated with the MJO but offer limited insight on the role of ocean feedbacks. Consequently, uncertainty remains concerning the role of the ocean in MJO theory. Our understanding of how atmosphere-ocean coupled processes affect the MJO can be improved by collecting observations in poorly sampled regions of MJO activity, assessing oceanic and atmospheric drivers of surface fluxes, improving the representation of upper ocean mixing in coupled model simulations, designing model experiments that minimize mean state differences, and developing diagnostic tools to evaluate the nature and role of coupled ocean-atmosphere processes over the MJO cycle.
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NOAA, Pacific Marine Environm Lab, 7600 Sand Point Way Ne, Seattle, WA 98115 USANOAA, Pacific Marine Environm Lab, 7600 Sand Point Way Ne, Seattle, WA 98115 USA
Zhang, C.
Adames, A. F.
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Univ Michigan, Dept Climate & Space Sci & Engn, Ann Arbor, MI 48109 USANOAA, Pacific Marine Environm Lab, 7600 Sand Point Way Ne, Seattle, WA 98115 USA
Adames, A. F.
Khouider, B.
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Univ Victoria, Dept Math & Stat, Victoria, BC, CanadaNOAA, Pacific Marine Environm Lab, 7600 Sand Point Way Ne, Seattle, WA 98115 USA
Khouider, B.
Wang, B.
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Univ Hawaii, Dept Atmospher Sci, Honolulu, HI 96822 USANOAA, Pacific Marine Environm Lab, 7600 Sand Point Way Ne, Seattle, WA 98115 USA
Wang, B.
Yang, D.
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Univ Calif Davis, Dept Land Air & Water Resources, Davis, CA 95616 USA
Lawrence Berkeley Natl Lab, Berkeley, CA USANOAA, Pacific Marine Environm Lab, 7600 Sand Point Way Ne, Seattle, WA 98115 USA
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Indian Inst Trop Meteorol, Pune, Maharashtra, IndiaUniv Paris 06, CNRS, IRD, LOCEAN, F-75252 Paris 05, France
Jayakumar, A.
Vialard, Jerome
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Univ Paris 06, CNRS, IRD, LOCEAN, F-75252 Paris 05, France
CSIR, Natl Inst Oceanog, Goa, IndiaUniv Paris 06, CNRS, IRD, LOCEAN, F-75252 Paris 05, France
Vialard, Jerome
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Lengaigne, M.
Gnanaseelan, C.
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Indian Inst Trop Meteorol, Pune, Maharashtra, IndiaUniv Paris 06, CNRS, IRD, LOCEAN, F-75252 Paris 05, France
Gnanaseelan, C.
McCreary, Julian P.
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Univ Hawaii, Int Pacific Res Ctr, Honolulu, HI 96822 USAUniv Paris 06, CNRS, IRD, LOCEAN, F-75252 Paris 05, France
McCreary, Julian P.
Kumar, B. Praveen
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CSIR, Natl Inst Oceanog, Goa, IndiaUniv Paris 06, CNRS, IRD, LOCEAN, F-75252 Paris 05, France
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Univ Calif Davis, Atmospher Sci Program, Dept Land Air & Water Resources, Davis, CA 95616 USAUniv Calif Davis, Atmospher Sci Program, Dept Land Air & Water Resources, Davis, CA 95616 USA