Complex network of synchronous climate events in East Asian tree-ring data

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作者
Xijin Wang
Fenghua Xie
Zhongshi Zhang
Stefan Liess
Keyan Fang
Chenxi Xu
Feng Shi
机构
[1] China University of Geosciences,Department of Atmospheric Science, School of Environmental Studies
[2] Bjerknes Center for Climate Research,Uni Research Climate
[3] Institute of Atmospheric Physics,Nansen
[4] Chinese Academy of Sciences,Zhu International Research Centre
[5] University of Minnesota,Department of Soil, Water, and Climate
[6] Fujian Normal University,Key Laboratory of Humid Subtropical Eco
[7] Institute of Geology and Geophysics,geographical Process (Ministry of Education)
[8] Chinese Academy of Sciences,Key Laboratory of Cenozoic Geology and Environment
[9] CAS Center for Excellence in Life and Paleoenvironment,undefined
来源
Climatic Change | 2021年 / 165卷
关键词
Complex network; Tree-ring width; East Asia; Little Ice Age; Modern Warm Period;
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学科分类号
摘要
With high temporal resolution and accurate age control, tree-ring width is a good proxy for recording past climate variations from interannual to centennial time scales. The complex network method, widely used in analyses of modern meteorological observations, is an effective method to demonstrate synchronizations within climate events, thus revealing potential climate teleconnections. In this study, we tested to use the complex network in analyzing extremes recorded in time serials of tree-ring width in East Asia during the past 600 years. Our study indicates that this method is a valuable approach to reveal synchronizations in climate-sensitive tree-ring width records, though the ability of this method is dependent on the quality of the tree-ring data. Furthermore, our study shows stronger synchronizations in extremes of tree-ring width records during the CE 1850–1950 period in the Modern Warm Period than the CE 1450–1650 period in the Little Ice Age. A remarkable shift in synchronization types within the south part and the inland East Asia sites appears during the year CE 1850–1950. These changes in synchronizations suggest potential reorganizations in climate teleconnections, which is worthy being addressed in further studies with detrending and statistical significance testing methods involved.
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