An interdecadal climate dipole between Northeast Asia and Antarctica over the past five centuries
Creators
- 1. Fujian Normal University, Key Laboratory of Humid Subtropical Eco-geographical Process (Ministry of Education) (China)
- 2. University of Gothenburg, Regional Climate Group, Department of Earth Sciences (Sweden)
- 3. Chinese Academy of Sciences, Key Laboratory of Cenozoic Geology and Environment, Institute of Geology and Geophysics (China)
- 4. Chinese Academy of Sciences, Institute of Geographic Sciences and Natural Resources Research (China)
- 5. University of Arizona, Laboratory of Tree-ring Research (United States)
- 6. Leibniz Institute of Atmospheric Physics (Germany)
- 7. University of Helsinki, Department of Geosciences and Geography (Finland)
- 8. University of Bern, Oeschger Centre for Climate Change Research (Switzerland)
Description
Climate models emphasize the need to investigate inter-hemispheric climatic interactions. However, these models often underestimate the inter-hemispheric differences in climate change. With the wide application of reanalysis data since 1948, we identified a dipole pattern between the geopotential heights (GPHs) in Northeast Asia and Antarctica on the interdecadal scale in boreal summer. This Northeast Asia/Antarctica (NAA) dipole pattern is not conspicuous on the interannual scale, probably in that the interannual inter-hemispheric climate interaction is masked by strong interannual signals in the tropics associated with the El Niño-Southern Oscillation (ENSO). Unfortunately, the instrumental records are not sufficiently long-lasting to detect the interdecadal variability of the NAA. We thus reconstructed GPHs since 1565, making using the proxy records mostly from tree rings in Northeast Asia and ice cores from Antarctica. The strength of the NAA is time-varying and it is most conspicuous in the eighteenth century and after the late twentieth century. The strength of the NAA matches well with the variations of the solar radiation and tends to increase in along with its enhancement. In boreal summer, enhanced heating associated with high solar radiation in the Northern Hemisphere drives more air masses from the South to the North. This inter-hemispheric interaction is particularly strong in East Asia as a result of the Asian summer monsoon. Northeast Asia and Antarctica appear to be the key regions responsible for inter-hemispheric interactions on the interdecadal scale in boreal summer since they are respectively located at the front and the end of this inter-hemispheric trajectory.
Additional details
Identifiers
Publishing Information
- Journal Title
- Climate Dynamics
- Journal Volume
- 52
- Journal Issue
- 1-2
- Journal Page Range
- p. 765-775
- ISSN
- 0930-7575
- CODEN
- CLDYEM
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 52000669
- Subject category
- S54: ENVIRONMENTAL SCIENCES;
- Descriptors DEI
- ANTARCTICA; ATMOSPHERIC CIRCULATION; CHINA; CLIMATE MODELS; CLIMATIC CHANGE; COMPUTERIZED SIMULATION; JAPAN; MONGOLIAN PEOPLES REPUBLIC; NORTH KOREA; NORTHERN HEMISPHERE; REPUBLIC OF KOREA; SEASONS; SIBERIA; SOLAR RADIATION; SOUTHERN OSCILLATION
- Descriptors DEC
- ANTARCTIC REGIONS; ASIA; CRYOSPHERE; DEVELOPED COUNTRIES; DEVELOPING COUNTRIES; EARTH PLANET; EASTERN EUROPE; EUROPE; MATHEMATICAL MODELS; PLANETS; POLAR REGIONS; RADIATIONS; RUSSIAN FEDERATION; SIMULATION; STELLAR RADIATION
Optional Information
- Copyright
- Copyright (c) 2019 Springer-Verlag GmbH Germany, part of Springer Nature