Simulation study on the correlation between the ground cosmic rays and the near earth thunderstorms electric field at Yangbajing (Tibet China) | |
Zhou, XX; Wang, XJ; Huang, DH; Jia, HY; Wu, CY; Wu CY(吴超勇) | |
刊名 | ACTA PHYSICA SINICA |
2015 | |
卷号 | 64期号:14页码:149202 |
关键词 | near earth thunderstorms electric field cosmic rays Monte Carlo simulations YBJ |
其他题名 | 近地雷暴电场与羊八井地面宇宙线关联的模拟研究 |
英文摘要 | Coincident study on the intensity change of the ground cosmic rays during thunderstorms is very important for understanding the acceleration mechanism of secondary charged particles caused by atmospheric electric field. It is found that the strength of the near earth thunderstorm electric field can be up to 1000 V/cm or even higher from ARGO-YBJ (where YBJ stands for Yangbajing, 4300 m a.s.l., Tibet, China) data in 2012. In this paper, Monte Carlo simulations are performed by using CORSIKA program to study the correlations between the intensity of the ground cosmic rays and the near earth thunderstorm electric field at YBJ. When the atmospheric electric field strength is higher than the threshold field strength (E-RB) for the development of a runaway breakdown process, the total number of electrons and positrons is exponentially increases. At an electric field strength of 1500 V/cm, the number increases exponentially and reaches a maximum value at an atmospheric depth of similar to 520g/cm(2), where the electric field is slightly stronger than the threshold field strength. These results are consistent with the theoretical results of relativistic runaway electron avalanche (RREA) which was proposed by Gurevich et al. (Gurevich A V, Milikh G M, Roussel-Dupre R 1992 Phys. Lett. A 165 463) and also supports Dwyer's theory. The total number of electrons and positrons increases with the strength of the field in the negative field or in the positive field greater than 600 V/cm, while a certain degree of decline occurs in the positive field less than 400 V/cm. In the range 400-600 V/cm, the energy of the primary proton should be taken into account. For the primary energy that is lower than 80 GeV, the total number of electrons and positrons increases. And it does not change obviously when the energy is between 80 GeV and 120 GeV. For the primary energy exceeds 120 GeV, the number drops off, and the decrease is of similar to 4%. During thunderstorms, a short duration occurs in which the single particle counting rate increases as energy lowers, while a decrease happens with energy becoming higher than that from ARGO-YBJ data. Our preliminary results can give reasonable explanations to the experimental observations of ARGO-YBJ. |
学科主题 | Physics |
类目[WOS] | Physics, Multidisciplinary |
收录类别 | SCI ; EI |
WOS记录号 | WOS:000362976400053 |
公开日期 | 2016-05-03 |
内容类型 | 期刊论文 |
源URL | [http://ir.ihep.ac.cn/handle/311005/228799] |
专题 | 中国科学院高能物理研究所 |
推荐引用方式 GB/T 7714 | Zhou, XX,Wang, XJ,Huang, DH,et al. Simulation study on the correlation between the ground cosmic rays and the near earth thunderstorms electric field at Yangbajing (Tibet China)[J]. ACTA PHYSICA SINICA,2015,64(14):149202. |
APA | Zhou, XX,Wang, XJ,Huang, DH,Jia, HY,Wu, CY,&吴超勇.(2015).Simulation study on the correlation between the ground cosmic rays and the near earth thunderstorms electric field at Yangbajing (Tibet China).ACTA PHYSICA SINICA,64(14),149202. |
MLA | Zhou, XX,et al."Simulation study on the correlation between the ground cosmic rays and the near earth thunderstorms electric field at Yangbajing (Tibet China)".ACTA PHYSICA SINICA 64.14(2015):149202. |
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