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Nonlinear response of summer temperature to Holocene insolation forcing in Alaska

机译:夏季温度对阿拉斯加全新世强迫的非线性响应

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摘要

Regional climate responses to large-scale forcings, such as precessional changes in solar irradiation and increases in anthropogenic greenhouse gases, may be nonlinear as a result of complex interactions among earth system components. Such nonlinear behaviors constitute a major source of climate “surprises” with important socioeconomic and ecological implications. Paleorecords are key for elucidating patterns and mechanisms of nonlinear responses to radiative forcing, but their utility has been greatly limited by the paucity of quantitative temperature reconstructions. Here we present Holocene July temperature reconstructions on the basis of midge analysis of sediment cores from three Alaskan lakes. Results show that summer temperatures during 10,000–5,500 calibrated years (cal) B.P. were generally lower than modern and that peak summer temperatures around 5,000 were followed by a decreasing trend toward the present. These patterns stand in stark contrast with the trend of precessional insolation, which decreased by ∼10% from 10,000 y ago to the present. Cool summers before 5,500 cal B.P. coincided with extensive summer ice cover in the western Arctic Ocean, persistence of a positive phase of the Arctic Oscillation, predominantly La Niña-like conditions, and variation in the position of the Alaskan treeline. These results illustrate nonlinear responses of summer temperatures to Holocene insolation radiative forcing in the Alaskan sub-Arctic, possibly because of state changes in the Arctic Oscillation and El Niño-Southern Oscillation and associated land–atmosphere–ocean feedbacks.
机译:由于地球系统各部分之间复杂的相互作用,对大规模强迫的区域气候响应(例如太阳辐射的进动变化和人为温室气体的增加)可能是非线性的。这种非线性行为构成了具有重大社会经济和生态影响的气候“意外”的主要来源。古记录是阐明辐射强迫非线性响应的模式和机理的关键,但是由于缺乏定量温度重建,它们的应用受到了极大的限制。在这里,我们根据对三个阿拉斯加湖泊的沉积物芯进行的阶数分析,介绍了全新世7月的温度重建。结果表明,在10,000–5,500校准年(cal)B.P.的夏季温度。普遍低于现代,夏季最高气温在5,000左右,随后呈下降趋势。这些模式与进动日晒的趋势形成鲜明对比,日进日晒的趋势从10,000年前减少到目前的约10%。 5500cal B.P.之前的凉爽夏天恰逢北冰洋西部夏季盛大的冰盖,北极涛动正相位的持续存在,主要是拉尼娜现象,以及阿拉斯加林线位置的变化。这些结果说明了夏季温度对阿拉斯加次北极全新世日射辐射强迫的非线性响应,这可能是由于北极涛动和厄尔尼诺-南方涛动的状态变化以及相关的陆-气-海反馈引起的。

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