Non-Extensive Statistical Analysis of Seismicity on the West Coastline of Mexico

E. L. Flores-Márquez, A. Ramírez-Rojas, L. D. G. Sigalotti
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Abstract

Mexico is a well-known seismically active country, which is primarily affected by several tectonic plate interactions along the southern Pacific coastline and by active structures in the Gulf of California. In this paper, we investigate this seismicity using the classical Gutenberg–Richter (GR) law and a non-extensive statistical approach based on Tsallis entropy. The analysis is performed using data from the corrected Mexican seismic catalog provided by the National Seismic Service, spanning the period from January 2000 to October 2023, and unlike previous work, it includes six different regions along the entire west coastline of Mexico. The Gutenberg–Richter law fitting to the earthquake sub-catalogs for all six regions studied indicates magnitudes of completeness between 3.30 and 3.76, implying that the majority of seismic movements occur for magnitudes less than 4. The cumulative distribution of earthquakes as derived from the Tsallis entropy was fitted to the corrected catalog data to estimate the q-entropic index for all six regions, which for values greater than one is a measure of the non-extensivity (i.e., non-equilibrium) of the system. All regions display values of the entropic index in the range 1.52≲q≲1.61, slightly lower than previously estimated ( 1.54≲q≲1.70) using catalog data from 1988 to 2010. The reason for this difference is related to the use of modern recording devices, which are sensitive to the detection of a larger number of low-magnitude events compared to older instrumentation.
墨西哥西海岸线地震非广泛统计分析
墨西哥是一个众所周知的地震活跃国家,主要受太平洋南部海岸线几个构造板块相互作用和加利福尼亚湾活跃结构的影响。在本文中,我们使用经典的古腾堡-里克特(GR)定律和基于 Tsallis 熵的非广延性统计方法对这种地震活动性进行了研究。分析使用的数据来自墨西哥国家地震局提供的经校正的墨西哥地震目录,时间跨度为 2000 年 1 月至 2023 年 10 月,与之前的工作不同,它包括墨西哥整个西海岸线的六个不同区域。根据古腾堡-里克特定律对所研究的所有六个地区的地震子目录进行拟合,结果显示完整度在 3.30 到 3.76 之间,这意味着大多数地震运动的震级小于 4 级。所有区域显示的熵指数值范围都在 1.52≲q≲1.61,略低于之前利用 1988 年至 2010 年星表数据估算的值(1.54≲q≲1.70)。造成这种差异的原因与使用现代记录装置有关,与老式仪器相比,现代记录装置对探测到更多的低震级事件很敏感。
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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