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Luminescence Dating of Fluvial Deposits from the Weser Valley, Germany

机译:德国威悉河谷河流沉积物的发光测年法

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Luminescence dating was applied on coarse-grained monomineralic potassium-rich feld-spar and polymineralic fine-grained minerals of five samples derived from fluvial deposits of the Riv-er Weser in northwestern Germany. We used a pulsed infrared stimulated luminescence (IRSL) single aliquot regenerative (SAR) dose protocol with an IR stimulation at 50°C for 400 s (50 μs on-time and 200 μs off-time). In order to obtain a stable luminescence signal, only off-time IRSL signal was rec-orded. Performance tests gave solid results. Anomalous fading was intended to be reduced by using the pulsed IRSL signal measured at 50°C (IR50), but fading correction was in most cases necessary due to moderate fading rates. Fading uncorrected and corrected pulsed IR50 ages revealed two major fluvial aggradation phases during the Late Pleistocene, namely during marine isotope stage (MIS) 5d (100 ± 5 ka) and from late MIS 5b to MIS 4 (77 ± 6 ka to 68 ± 5 ka). The obtained luminescence ages are consistent with previous 230Th/U dating results from underlying interglacial deposits of the same pit, which are correlated with MIS 7c to early MIS 6.
机译:对来自德国西北部Riv-er Weser河流矿床的5个样品的粗粒单矿富钾长石和多矿物细粒矿物进行了发光测年。我们使用脉冲红外受激发光 (IRSL) 单等分试样再生 (SAR) 剂量方案,在 50°C 下进行 IR 刺激 400 秒(50 μs 导通时间和 200 μs 关断时间)。为了获得稳定的发光信号,仅对关断时间IRSL信号进行调控。性能测试给出了可靠的结果。通过使用在50°C(IR50)下测量的脉冲IRSL信号来减少异常衰落,但由于衰落速率适中,在大多数情况下需要进行衰落校正。褪色未校正和校正脉冲IR50年龄揭示了晚更新世的两个主要河流加重阶段,即海洋同位素阶段(MIS)5d(100±5 ka)和MIS 5b晚期至MIS 4(77 ± 6 ka至68 ± 5 ka)。得到的发光年龄与先前同一坑下层间冰期沉积物的230Th/U测年结果一致,与MIS 7c和早期MIS 6相关。

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