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Electron Spin Resonance (ESR) Dating of Calcareous Fault Gouge of the Ushikubi Fault Central Japan

机译:日本中部Ushikubi断层的钙质断层泥的电子自旋共振(ESR)年代

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摘要

The ages of fault events of active faults have been estimated using electron spin resonance (ESR) signals of siliceous gouges. This technique of ESR method is limited by obtaining only ages that are greater than tens of millennia. So this study focuses on developing a new technique of using calcareous gouges to gain an insight into the ages of latest seismogenic event within the Holocene. For the first time, signal B of the ESR method has been used to estimate the age of the Ushikubi fault from calcareous gouge. This technique proved reliable because the mean age (1.9 ka) obtained agrees with previous works on indirect age determination of latest fault events by utilizing radiocarbon dating in the study area. However, the result from the ESR technique showed an increase relative to the age of 1 ka that was obtained by the radiocarbon dating method. This disparity may be due to a high dose rate value of 50 Gy/h of artificial irradiation that was used to determine the equivalent dose (ED). Moreover, isochronal experiment revealed that the gouge did not comprise pure carbonates but consisted of a mixture of calcite and quartz grains. A younger age value would have been obtained if a lower artificial irradiation dose rate and a relatively pure carbonate fault gouge were used in the ED determination.
机译:活动断层的断层事件的年龄已经通过硅质泥沙的电子自旋共振(ESR)信号进行了估计。仅通过获得大于几千年的年龄来限制ESR方法的这项技术。因此,本研究着重于开发一种使用石灰质凿子的新技术,以了解全新世内最新的地震事件的年代。 ESR方法的信号B首次用于估计钙质泥质Ushikubi断层的年龄。事实证明该技术是可靠的,因为获得的平均年龄(1.9 ka)与先前通过研究区域的放射性碳年代测定间接确定最新断层事件的年龄相一致。但是,ESR技术的结果表明,通过放射性碳测年方法获得的相对于1ka的年龄而言有所增加。这种差异可能是由于用于确定等效剂量(ED)的50 Gy / h的高剂量率值的人工辐射引起的。此外,等时实验表明,该凿子不包含纯碳酸盐,而是由方解石和石英颗粒的混合物组成。如果在ED测定中使用较低的人工辐射剂量率和相对纯净的碳酸盐断层泥,则将获得较年轻的年龄值。

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