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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >An empirical model of production and attenuation of fluorescence light in atmosphere for satellite-based Ultra High Energy Cosmic Ray experiments
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An empirical model of production and attenuation of fluorescence light in atmosphere for satellite-based Ultra High Energy Cosmic Ray experiments

机译:基于卫星的超高能宇宙射线实验的大气中荧光产生和衰减的经验模型

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摘要

In the context of detection of Ultra High Energy Cosmic Ray (UHECR) showers from space the details of fluorescence light production and transmission in the atmosphere are given. An analytical model of the fluorescence yield, in dependence on nitrogen molecular parameters and the atmospheric conditions, is presented. Seasonal and geographical variations of the total fluorescence photon yield between 300 nm and 400 nm in air excited by 0.85 MeV electrons are shown as a function of the altitude, using different atmospheric models. In the frame of a satellite-based UHECR experiment the fluorescence yield has been corrected by the overall atmospheric transmission which takes into account, in the simplest approximation, the wavelength-dependent scattering and absorption of the fluorescence light from air molecules, from stratospheric ozone, and from aerosol. The effect of the atmospheric attenuation on the fluorescence yield is shown as a function of the altitude of the emission point of light.
机译:在从太空探测超高能宇宙射线(UHECR)阵雨的背景下,给出了在大气中产生和透射荧光的细节。提出了取决于氮分子参数和大气条件的荧光产率的分析模型。使用不同的大气模型,显示了在0.85 MeV电子激发的空气中,总荧光光子产量在300 nm至400 nm之间的季节性和地理变化与海拔的关系。在基于卫星的UHECR实验中,通过整体大气传输对荧光产量进行了校正,其中最简单的方法是考虑空气分子,平流层臭氧中荧光的波长依赖性散射和吸收,和气溶胶。大气衰减对荧光产量的影响显示为光发射点高度的函数。

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