Study of longitudinal development of air showers in the knee energy range

IF 4.2 3区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Feng Zhang , Hu Liu , Fengrong Zhu , Jacob Oloketuyi
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Abstract

Ground-based cosmic ray experiments detect cosmic ray mainly by measuring the longitudinal and lateral distribution of secondary particles produced in the extensive air shower (EAS). The EAS of cosmic ray in the knee energy region is simulated via CORSIKA software. Several simulation samples with different energy, composition and zenith angles were carried out to understand the longitudinal development of electron, muon and Cherenkov light in EAS. All the results presented were obtained assuming an observation plane at an altitude of 4400 m a.s.l. The differences of longitudinal development between electron and Cherenkov light were studied, and the reconstruction uncertainty of shower maximum for electron from Cherenkov light was estimated to be 10–15 g/cm2 for nuclei above 1 PeV. The performances of energy measurement and the composition discrimination ability based on longitudinal development were studied and compared with that from lateral distribution. It was found that number of electron per depth at its shower maximum has the smallest shower-to-shower fluctuations, but the shower-to-shower fluctuations of electron density measured at observation level was very close to it when the appropriate zenith angle was employed. The shower-to-shower fluctuations of shower maximum for electron is 50–55 g/cm2 for proton, and 20–25 g/cm2 for iron, but the composition discrimination ability between nuclei from muon density measured at observation level is much better than the shower maximum variable from longitudinal development. The hadronic model dependencies of the longitudinal development and lateral distribution were also discussed.

膝能量范围内风淋室纵向发展的研究
地面宇宙射线实验主要通过测量大面积气淋中二次粒子的纵向和横向分布来探测宇宙射线。利用CORSIKA软件模拟了宇宙射线在膝部能量区的EAS。利用不同能量、组成和天顶角的模拟样品,了解电子、介子和切伦科夫光在EAS中的纵向发展。研究了电子与切伦科夫光纵向发展的差异,估计了切伦科夫光对1 PeV以上原子核的电子的最大雨射重建不确定度为10 ~ 15 g/cm2。研究了基于纵向分布的能量测量和成分识别能力,并与横向分布的能量测量和成分识别能力进行了比较。结果表明,每深度的电子数在其最大星点处具有最小的星点到星点的波动,但当采用适当的天顶角时,在观测水平上测得的电子密度的星点到星点的波动与之非常接近。电子的阵雨最大值的阵雨间波动为质子50 ~ 55 g/cm2,铁的阵雨最大值为20 ~ 25 g/cm2,但从观测水平上测量的介子密度来判别原子核间成分的能力要比从纵向发展得到的阵雨最大值好得多。讨论了强子模式对纵向发展和横向分布的依赖关系。
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来源期刊
Astroparticle Physics
Astroparticle Physics 地学天文-天文与天体物理
CiteScore
8.00
自引率
2.90%
发文量
41
审稿时长
79 days
期刊介绍: Astroparticle Physics publishes experimental and theoretical research papers in the interacting fields of Cosmic Ray Physics, Astronomy and Astrophysics, Cosmology and Particle Physics focusing on new developments in the following areas: High-energy cosmic-ray physics and astrophysics; Particle cosmology; Particle astrophysics; Related astrophysics: supernova, AGN, cosmic abundances, dark matter etc.; Gravitational waves; High-energy, VHE and UHE gamma-ray astronomy; High- and low-energy neutrino astronomy; Instrumentation and detector developments related to the above-mentioned fields.
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