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Dating glacier ice of the last millennium by quantum technology

机译:利用量子技术对近千年的冰川冰进行定年

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摘要

Radiometric dating with 39Ar covers a unique time span and offers key advances in interpreting environmental archives of the last millennium. Although this tracer has been acknowledged for decades, studies so far have been limited by the low abundance and radioactivity, thus requiring huge sample sizes. Atom trap trace analysis, an application of techniques from quantum physics such as laser cooling and trapping, allows us to reduce the sample volume by several orders of magnitude compared with conventional techniques. Here we show that the adaptation of this method to 39Ar is now available for glaciological applications, by demonstrating the entire process chain for dating of alpine glacier ice by argon trap trace analysis (ArTTA). Ice blocks as small as a few kilograms are sufficient and have been obtained at two artificial glacier caves. Importantly, both sites offer direct access to the stratigraphy at the glacier base and validation against existing age constraints. The ice blocks obtained at Chli Titlis glacier at 3,030 m asl (Swiss Alps) have been dated by state-of-the-art microradiocarbon analysis in a previous study. The unique finding of a bark fragment and a larch needle within the ice of Schaufelferner glacier at 2,870 m asl (Stubai Alps, Austria) allows for conventional radiocarbon dating. At both sites the existing age information based on radiocarbon dating and visual stratigraphy corroborates the 39Ar ages. With our results, we establish argon trap trace analysis as the key to decipher so far untapped glacier archives of the last millennium.
机译: 39 Ar进行的辐射测年涵盖了一个独特的时间跨度,并在解释上一个千年的环境档案方面提供了重要的进展。尽管这种示踪剂已经被确认了数十年,但迄今为止,由于其低丰度和低放射性而受到研究的限制,因此需要大量的样品。原子阱痕量分析是一种量子物理学技术的应用,例如激光冷却和捕获,可让我们与传统技术相比将样品体积减少几个数量级。在这里,我们展示了该方法对 39 Ar的适应性,现在已经可用于冰川学,方法是通过氩阱痕量分析(ArTTA)演示高山冰川冰测年的整个过程链。小到几公斤的冰块就足够了,并且是在两个人造冰川洞穴中获得的。重要的是,这两个站点都可以直接访问冰川基地的地层,并根据现有的年龄限制进行验证。在先前的研究中,通过最新的微放射性碳分析已经确定了在Chli Titlis冰川在3030 m asl(瑞士阿尔卑斯山)获得的冰块。在2,870 m asl(奥地利Stubai阿尔卑斯山)的Schaufelferner冰川的冰中独特地发现树皮碎片和落叶松针,这使常规的放射性碳测年成为可能。在这两个站点上,基于放射性碳测年和视觉地层学的现有年龄信息证实了 39 Ar年龄。根据我们的结果,我们建立了氩气阱痕量分析的关键,这是解密上一个千年尚未开发的冰川档案的关键。

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