低纬度站大气压力、温度和湿度对宇宙射线介子的作用

Abdullrahman H. Maghrabi, Safia A. Alzahrani, Aied S. Alruhaili
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引用次数: 0

摘要

本研究旨在利用2007年至2012年在沙特阿拉伯吉达的KAAU μ子探测器收集的每日和每月的CR数据,研究大气条件与宇宙射线μ子之间的关系。具体而言,该研究考察了不同时间尺度(年、季节和月)大气压力、空气温度和相对湿度对CR μ子的影响。分析结果显示,大气压力和气温对CR μ子有负面影响,而相对湿度对CR μ子有积极影响。虽然气温和相对湿度在所有时间尺度上的平均值都很小,但它们的系数在月份和季节之间变化显著。此外,研究对每一天进行了多变量相关分析,结果表明压力系数的平均值始终为负,而温度和湿度系数的影响则从正到负不等。系数变化的原因尚不完全清楚,但该研究提出了几种可能的地球和外星解释。这些发现为了解地球大气和宇宙射线之间复杂的相互作用提供了重要的见解,有助于更好地了解宇宙射线对地球气候和环境的潜在影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Role of Atmospheric Pressure, Temperature, and Humidity on Cosmic Ray Muons at a Low Latitude Station
This study aimed to investigate the relationship between atmospheric conditions and cosmic ray (CR) muons using daily and monthly CR data collected by the KAAU muon detector in Jeddah, Saudi Arabia between 2007 and 2012. Specifically, the study examined the effects of atmospheric pressure, air temperature, and relative humidity on CR muons at different time scales (annual, seasonal, and monthly). The results of the analysis revealed that atmospheric pressure and air temperature had a negative impact on CR muons, while relative humidity had a positive impact. Although air temperature and relative humidity had small mean values across all time scales, their coefficients varied significantly from month to month and season to season. In addition, the study conducted multivariable correlation analyses for each day, which showed that pressure coefficients had consistently negative mean values, while the temperature and humidity coefficients had varying effects, ranging from positive to negative values. The reasons for the variations in the coefficients are not yet fully understood, but the study proposed several possible terrestrial and extraterrestrial explanations. These findings provide important insights into the complex interactions between the Earth’s atmosphere and cosmic rays, which can contribute to a better understanding of the potential impacts of cosmic rays on the Earth’s climate and environment.
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