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Solar Output Controls Periodicity in Lake Productivity and Wetness at Southernmost South America

机译:太阳能输出控制南美最南端湖泊生产力和湿度的周期性

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摘要

Cyclic changes in total solar irradiance (TSI) during the Holocene are known to affect global climatic conditions and cause cyclic climatic oscillations, e.g., Bond events and related changes of environmental conditions. However, the processes how changes in TSI affect climate and environment of the Southern Hemisphere, especially in southernmost South America, a key area for the global climate, are still poorly resolved. Here we show that highly sensitive proxies for aquatic productivity derived from sediments of a lake near the Chilean South Atlantic coast (53 °S) strongly match the cyclic changes in TSI throughout the Holocene. Intra-lake productivity variations show a periodicity of ~200–240 years coherent with the time series of TSI-controlled cosmogenic nuclide 10Be production. In addition TSI dependent periodicity of Bond events (~1500 years) appear to control wetness at the LH site indicated by mineral matter erosion from the catchment to the lake assumingly through shifts of the position of the southern westerly wind belt. Thus, both intra-lake productivity and wetness at the southernmost South America are directly or indirectly controlled by TSI.
机译:全新世期间总太阳辐照度(TSI)的周期性变化会影响全球气候条件,并导致周期性的气候振荡,例如键合事件和相关的环境条件变化。但是,TSI的变化如何影响南半球,特别是在全球气候的关键地区南美洲最南端的气候和环境的过程,仍然难以解决。在这里,我们显示了来自智利南大西洋沿岸(53°S)附近湖泊沉积物的水生生产力的高度敏感代理与整个全新世TSI的周期性变化强烈匹配。湖内生产力变化显示出约200-240年的周期性,与TSI控制的宇宙成因核素 10 Be生产的时间序列一致。此外,TSI依赖的Bond事件的周期性(约1500年)似乎可以控制LH站点的湿度,这可能是由南部西风带位置的偏移所致,即从集水区到湖泊的矿物质侵蚀所指示。因此,TSI直接或间接控制了南美最南端的湖内生产力和湿度。

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