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  See-saw relationship of the Holocene East Asian-Australian summer monsoon

Eroglu, D., McRobie, F. H., Ozken, I., Stemler, T., Wyrwoll, K.-H., Breitenbach, S. F. M., Marwan, N., Kurths, J. (2016): See-saw relationship of the Holocene East Asian-Australian summer monsoon. - Nature Communications, 7, 12929.
https://doi.org/10.1038/ncomms12929

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 ???ViewItemFull_lblCreators???:
Eroglu, Deniz1, ???ENUM_CREATORROLE_AUTHOR???           
McRobie, F. H.2, ???ENUM_CREATORROLE_AUTHOR???
Ozken, Ibrahim1, ???ENUM_CREATORROLE_AUTHOR???           
Stemler, T.2, ???ENUM_CREATORROLE_AUTHOR???
Wyrwoll, K.-H.2, ???ENUM_CREATORROLE_AUTHOR???
Breitenbach, S. F. M.2, ???ENUM_CREATORROLE_AUTHOR???
Marwan, Norbert1, ???ENUM_CREATORROLE_AUTHOR???                 
Kurths, Jürgen1, ???ENUM_CREATORROLE_AUTHOR???           
???ViewItemFull_lblAffiliations???:
1Potsdam Institute for Climate Impact Research, ou_persistent13              
2Potsdam Institute for Climate Impact Research and Cooperation Partners, ou_persistent13              

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 ???ViewItemFull_lblAbstract???: The East Asian–Indonesian–Australian summer monsoon (EAIASM) links the Earth’s hemispheres and provides a heat source that drives global circulation. At seasonal and inter-seasonal timescales, the summer monsoon of one hemisphere is linked via outflows from the winter monsoon of the opposing hemisphere. Long-term phase relationships between the East Asian summer monsoon (EASM) and the Indonesian–Australian summer monsoon (IASM) are poorly understood, raising questions of long-term adjustments to future greenhouse-triggered climate change and whether these changes could ‘lock in’ possible IASM and EASM phase relationships in a region dependent on monsoonal rainfall. Here we show that a newly developed nonlinear time series analysis technique allows confident identification of strong versus weak monsoon phases at millennial to sub-centennial timescales. We find a see–saw relationship over the last 9,000 years—with strong and weak monsoons opposingly phased and triggered by solar variations. Our results provide insights into centennial- to millennial-scale relationships within the wider EAIASM regime.

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 ???ViewItemFull_lblDates???: 2016
 ???ViewItemFull_lblPublicationStatus???: ???ViewItem_lblPublicationState_published-in-print???
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 ???ViewItemFull_lblIdentifiers???: ???ENUM_IDENTIFIERTYPE_DOI???: 10.1038/ncomms12929
???ENUM_IDENTIFIERTYPE_PIKDOMAIN???: Transdisciplinary Concepts & Methods - Research Domain IV
???ENUM_IDENTIFIERTYPE_EDOC???: 7331
???ENUM_IDENTIFIERTYPE_RESEARCHTK???: Nonlinear Dynamics
???ENUM_IDENTIFIERTYPE_RESEARCHTK???: Monsoon
???ENUM_IDENTIFIERTYPE_RESEARCHTK???: Paleoclimate
???ENUM_IDENTIFIERTYPE_RESEARCHTK???: Atmosphere
???ENUM_IDENTIFIERTYPE_MODELMETHOD???: Nonlinear Data Analysis
???ENUM_IDENTIFIERTYPE_REGIONALK???: Asia
???ENUM_IDENTIFIERTYPE_REGIONALK???: Oceania/Australia
???ENUM_IDENTIFIERTYPE_ORGANISATIONALK???: RD4 - Complexity Science
???ENUM_IDENTIFIERTYPE_WORKINGGROUP???: Development of advanced time series analysis techniques
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???ViewItemFull_lblSourceTitle???: Nature Communications
???ViewItemFull_lblSourceGenre???: ???ENUM_GENRE_JOURNAL???, SCI, Scopus, p3, oa
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???ViewItemFull_lblPages???: ???lbl_noEntry??? ???ViewItemFull_lblSourceVolumeIssue???: 7 ???ViewItemFull_lblSourceSequenceNo???: 12929 ???ViewItemFull_lblSourceStartEndPage???: ???lbl_noEntry??? ???ViewItemFull_lblSourceIdentifier???: ???ENUM_IDENTIFIERTYPE_CONE???: https://publications.pik-potsdam.de/cone/journals/resource/journals354