Absolute Dating of Fault-Gouge Material Using Isothermal Thermoluminescence: An Example from the Nojima Fault Zone, SW Japan

E. Tsakalos, E. Filippaki, Aiming Lin, M. Kazantzaki, T. Nishiwaki, Y. Bassiakos
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Abstract

Establishing the absolute age of palaeoearthquakes is of great significance for the assessment of the seismicity and seismic hazards of a region. As such, several different geochronological techniques to date earthquake-related material have been developed to provide answers on the time of past earthquakes. The present study is part of a wider palaeoseismic research project conducted in the Nojima Fault Zone (NFZ), where the 1995 Mw 6.9 Kobe (Japan) earthquake was triggered, to assess the suitability of the isothermal thermoluminescence (ITL) dating technique on fine-grained quartz and medium-grained feldspar and to provide a sequence of ages for fault-rock samples separated from a drilled core that was retrieved from a depth of ~506 m. Our analysis reveals that ITL can produce consistent dating results and can be considered a reliable luminescence technique for the absolute dating of fault-gouge material. The produced ITL ages signified the existence of repeated seismic events within the NFZ that took place through the late Pleistocene period, with gouge ages spanning from 78.6 ± 4.2 to 13.4 ± 1.4 ka; however, overestimation of the produced ITL dating results may be apparent. Nonetheless, even though some degree of overestimation is considered, ITL dating results denote the oldest possible age boundary of formation (or luminescence signal resetting) of the collected fault-gouge layers.
利用等温热释光对断层破碎材料进行绝对定年:日本西南部野岛断层带实例
确定古地震的绝对年代对于评估一个地区的地震活动性和地震灾害具有重要意义。因此,人们开发了几种不同的地质年代技术来确定与地震有关的材料的年代,从而为过去地震的发生时间提供答案。本研究是在野岛断裂带(NFZ)开展的更广泛的古地震研究项目的一部分,该断裂带是 1995 年日本神户 6.9 级地震的发生地,本研究旨在评估等温线热释光(ITL)测年技术在细粒石英和中粒长石上的适用性,并为从约 506 米深的钻孔岩芯中分离出来的断层岩样本提供年龄序列。我们的分析表明,国际热释光可以产生一致的年代测定结果,可以被认为是对断层破碎带材料进行绝对年代测定的一种可靠的发光技术。所得出的国际热发光测年结果表明,在晚更新世时期,NFZ 内发生了多次地震事件,断层冲沟的年代跨度为 78.6 ± 4.2 ka 到 13.4 ± 1.4 ka;不过,国际热发光测年结果可能存在明显的高估。尽管如此,即使考虑到一定程度的高估,ITL 测年结果仍表示了所收集的断层冲沟层形成(或发光信号重置)的最古老年龄边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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