Luminescence dating of glacially sourced deposits from northern Switzerland: Comparing multigrain aliquots and single grains of quartz and feldspar

IF 1.7 2区 地球科学 Q3 GEOGRAPHY, PHYSICAL Quaternary Geochronology Pub Date : 2024-06-01 DOI:10.1016/j.quageo.2024.101551
Daniela Mueller , Lukas Gegg , Alexander Fülling , Marius W. Buechi , Gaudenz Deplazes , Frank Preusser
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Abstract

A complex picture of the Pleistocene glaciation history of northern Switzerland has been identified over the last three decades. To gain further insights into the long-term landscape evolution, numerical dating is required. In the absence of alternative dating techniques, luminescence dating is the key method for establishing chronological constraints of past glaciations. However, this is presented with complex challenges, especially in regard to the resetting of the luminescence signal prior to deposition, the components contributing to the signal as well as the signal intensity and stability. In this study, the luminescence properties of glacially sourced deposits from northern Switzerland are assessed using single aliquot (SA) and single grain (SG) measurements of feldspar (F) and quartz (Q). While no obvious connection between bleaching and distal or proximal deposition in relation to the proposed ice margin is observed, most samples seem to reveal a partially bleached signature in F SG De measurements. This appears to be masked in the respective F SA measurements even though only few grains emit luminescence signals. In addition, comparisons between fading corrected infrared stimulated luminescence (IR) and post-infrared infrared stimulated luminescence (pIR) De values appear to be unreliable indicators of bleaching, even though these signals bleach at different rates. Hence, it is recommended to conduct both IR and pIR investigations in combination with Q measurements on a SG level. The dating potential of the investigated deposits remains rather limited, yet, in the sedimentologic context the presented results reveal that several glacial advances occurred prior to the Last Interglacial in the study area.

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瑞士北部冰川沉积物的发光测年:石英和长石的多粒等分与单粒比较
在过去的三十年中,瑞士北部更新世冰川历史的复杂图景已被确定。为了进一步了解地貌的长期演变,需要进行数字测年。在没有其他测年技术的情况下,发光测年是确定过去冰川年代的关键方法。然而,这也面临着复杂的挑战,尤其是在沉积前的发光信号重置、信号成分以及信号强度和稳定性方面。本研究使用长石(F)和石英(Q)的单等分(SA)和单晶粒(SG)测量方法评估了瑞士北部冰川沉积物的发光特性。虽然没有观察到漂白与拟议冰缘的远端或近端沉积之间的明显联系,但大多数样本似乎在长石 SG De 测量中显示出部分漂白特征。尽管只有极少数晶粒发出发光信号,但在相应的 F SA 测量中这一特征似乎被掩盖了。此外,褪色校正红外激发发光(IR)和后红外激发发光(pIR)De 值之间的比较似乎是不可靠的漂白指标,尽管这些信号的漂白速度不同。因此,建议在进行红外和 pIR 调查的同时,对 SG 进行 Q 值测量。所调查沉积物的测年潜力仍然相当有限,但是,从沉积学的角度来看,所提供的结果表明,在研究区域的末次间冰期之前,曾发生过几次冰川运动。
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来源期刊
Quaternary Geochronology
Quaternary Geochronology 地学-地球化学与地球物理
CiteScore
4.40
自引率
22.20%
发文量
130
审稿时长
20 weeks
期刊介绍: Quaternary Geochronology is an international journal devoted to the publication of the highest-quality, peer-reviewed articles on all aspects of dating methods applicable to the Quaternary Period - the last 2.6 million years of Earth history. Reliable ages are fundamental to place changes in climates, landscapes, flora and fauna - including the evolution and ecological impact of humans - in their correct temporal sequence, and to understand the tempo and mode of geological and biological processes.
期刊最新文献
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