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Atmospheric effects on extensive air showers observed with the surface detector of the Pierre Auger observatory

机译:用皮埃尔·奥格天文台的表面探测器观测到的大气对大风淋的影响

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摘要

Atmospheric parameters, Such as pressure (P), temperature (T) and density (rho proportional to P/T), affect the development of extensive air showers initiated by energetic cosmic rays. We have Studied the impact of atmospheric variations on extensive air showers by means of the surface detector of the Pierre Auger Observatory. The rate of events shows a similar to 10% seasonal modulation and similar to 2% diurnal one. We find that the observed behaviour is explained by a model including the effects associated with the variations of P and rho. The former affects the longitudinal development of air showers while the latter influences the Moliere radius and hence the lateral distribution of the shower particles. The model is validated with full simulations of extensive air showers using atmospheric profiles measured at the site of the Pierre Auger Observatory.
机译:大气参数,例如压力(P),温度(T)和密度(rho与P / T成比例),会影响由高能宇宙射线引发的大范围空气喷淋的发展。我们通过皮埃尔·奥格天文台的表面探测器研究了大气变化对大范围风淋的影响。事件发生率显示出类似于10%的季节性调节和类似于2%的昼夜调节。我们发现,观察到的行为是由一个模型解释的,该模型包括与P和rho变化相关的影响。前者影响空气喷淋的纵向发展,而后者影响莫里埃半径,从而影响喷淋颗粒的横向分布。该模型已通过使用在Pierre Auger天文台现场测量的大气廓线对大型风淋进行的完整模拟进行了验证。

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