论文标题
GAMMA诱导的电磁淋浴在GEV-TEV能量范围内的电磁淋浴的纵向Cherenkov发射曲线的参数化
A parameterisation of the longitudinal Cherenkov emission profiles of gamma induced electromagnetic showers in the atmosphere in the GeV-TeV energy range
论文作者
论文摘要
在通过成像大气Cherenkov望远镜(IACT)成像的伽马射线天文学中,大气被用作量热计。通过它们在大气中产生的电磁淋浴和它们发出的Cherenkov光线,可以观察到GEV-TEV能量范围内的入射伽马射线。我们旨在获得大气中电磁淋浴的纵向谱的参数化。这些淋浴的纵向Cherenkov发射曲线可用于重建伽马 - photon的参数以及伽马 - 戴龙歧视。因此,获得这些曲线的准确参数化可以用于分析IACT图像,以及从大气中γ诱导的阵雨的Cherenkov发射的快速模拟。在此之前,尚不知道这种参数是系统地进行的。我们对大气中的伽马引起的淋浴进行了蒙特卡洛模拟。其Cherenkov发射纵向轮廓的参数化基于粒子探测器物理中使用的众所周知的伽马功能。我们评估了纵向Cherenkov发射曲线的最大深度和平均深度的依赖性,以及参数$ 1/β$对初始淋浴的能量。我们还研究了与伽马功能相关的各种参数的分布,发现$β/α$和$ 1/α$具有高斯分布,并且彼此之间没有相关性,这使它们成为评估Cherenkov发射轮廓波动的适当变量。我们最终提出了这两个变量波动的参数化。
In gamma-ray astronomy through Imaging Atmospheric Cherenkov Telescopes (IACT), the atmosphere is used as a calorimeter. Incident gamma-rays in the GeV-TeV energy range are observed through the electromagnetic showers they produce in the atmosphere and the Cherenkov light emitted by them. We aim to obtain a parameterisation of the longitudinal profiles of electromagnetic showers in the atmosphere. The longitudinal Cherenkov emission profiles of these showers can be used for the reconstruction of the parameters of the gamma-photon as well gamma-hadron discrimination. Obtaining an accurate parameterisation of these profiles can therefore be used in the analysis of IACT images as well as fast simulation of the Cherenkov emission from gamma-induced showers in the atmosphere. Such parameterisations are not known to have been systematically carried out prior to this. We carry out Monte Carlo simulations of gamma-induced showers in the atmosphere. The parameterisation of their Cherenkov emission longitudinal profiles is based on the well-known gamma-function used in particle detector physics. We evaluate the dependence of the depth of the maximum and the average depth of the longitudinal Cherenkov emission profile, as well as the parameter $1/β$ on the energy of the initial shower. We also study the distributions of various parameters associated with the gamma-function and find that $β/α$ and $1/α$ have Gaussian distributions and are not correlated with each other which makes them appropriate variables for evaluating the fluctuations of the Cherenkov emission profiles. We finally present parameterisations of the fluctuations of these two variables.