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Tree Growth And Inferred Temperature Variability At The North American Arctic Treeline

机译:北美北极树线处的树木生长和推断的温度变化

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We present white spruce (Picea glauca) tree-ring width and maximum latewood density chronologies for two latitudinal treeline sites in northern interior Canada: along the Coppermine River in the Northwest Territories (NWT); and in the Thelon River Sanctuary, Nunavut. These chronologies provide climate and tree growth information for these two remote locations, filling a sizeable gap in spatial coverage of proxy records used to reconstruct temperature variability for the Northern Hemisphere. They represent some of the longest high-resolution proxies available for northern North America, dating as far back as AD 1046 for Coppermine ring widths. These chronologies correlate significantly with hemispheric-scale annual temperature reconstructions for the past millennium. Density records from both sites show a positive relationship with warm-season temperature data since ~ the mid-20th century, although this link is somewhat weaker in recent decades (since ~1980). Both ring-width chronologies demonstrate even greater loss of temperature sensitivity, and in the Thelon ring-width series a sustained reduction in growth appears linked to increased drought stress in this recent period. Diminishing correlations with temperature are also found when the Thelon ring-width and climate data are prewhitened, indicating that any low frequency uncertainties in the instrumental or tree-ring data (e.g., artifacts from the standardization process) cannot entirely account for this result. Our findings therefore suggest a recent loss of temperature sensitivity at these northern treeline locations that varies with the parameter and site studied. These and other uncertainties in the tree-ring as well as instrumental data will need to be resolved in future efforts to relate northern tree-ring records to temperature variability on a range of spatial scales.
机译:我们介绍了加拿大北部内陆的两个纬度林线站点的白云杉(Picea glauca)树年轮宽度和最大晚木密度年表:西北地区的铜矿河沿岸;和努纳武特(Nunavut)的Thelon河保护区。这些年表提供了这两个偏远地区的气候和树木生长信息,填补了用于重建北半球温度变化的代理记录的空间覆盖范围的巨大空白。它们代表了北美北部可用的最长的高分辨率代理,可追溯到公元1046年的Coppermine环宽度。这些时间顺序与过去千年的半球规模年度温度重建显着相关。自20世纪〜20世纪中叶以来,这两个站点的密度记录都与暖季温度数据呈正相关关系,尽管这种联系在最近几十年(自1980年以来)有所减弱。两种环宽年表都显示出更大的温度敏感性损失,在Thelon环宽系列中,生长的持续下降似乎与最近时期干旱压力的增加有关。当将Thelon环宽和气候数据预先加白时,还会发现与温度的相关性逐渐降低,这表明仪器或树木年轮数据中的任何低频不确定性(例如,来自标准化过程的伪像)都无法完全解释该结果。因此,我们的发现表明,这些北部林线位置最近温度敏感性的下降随所研究的参数和地点而变化。树轮的这些和其他不确定性以及仪器数据将需要在未来的工作中解决,以将北方树轮的记录与一系列空间尺度上的温度变化联系起来。

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