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Modeling the relativistic runaway electron avalanche and the feedback mechanism with GEANT4

机译:用GEANT4建模相对论失控电子雪崩及其反馈机制

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摘要

This paper presents the first study that uses the GEometry ANd Tracking 4 (GEANT4) toolkit to do quantitative comparisons with other modeling results related to the production of terrestrial gamma ray flashes and high-energy particle emission from thunderstorms. We will study the relativistic runaway electron avalanche (RREA) and the relativistic feedback process, as well as the production of bremsstrahlung photons from runaway electrons. The Monte Carlo simulations take into account the effects of electron ionization, electron by electron (Møller), and electron by positron (Bhabha) scattering as well as the bremsstrahlung process and pair production, in the 250 eV to 100 GeV energy range. Our results indicate that the multiplication of electrons during the development of RREAs and under the influence of feedback are consistent with previous estimates. This is important to validate GEANT4 as a tool to model RREAs and feedback in homogeneous electric fields. We also determine the ratio of bremsstrahlung photons to energetic electrons Nγ/Ne. We then show that the ratio has a dependence on the electric field, which can be expressed by the avalanche time τ(E) and the bremsstrahlung coefficient α(ε). In addition, we present comparisons of GEANT4 simulations performed with a “standard” and a “low-energy” physics list both validated in the 1 keV to 100 GeV energy range. This comparison shows that the choice of physics list used in GEANT4 simulations has a significant effect on the results.Key Points class="unordered" style="list-style-type:disc">Testing the feedback mechanism with GEANT4Validating the GEANT4 programming toolkitStudy the ratio of bremsstrahlung photons to electrons at TGF source altitude
机译:本文介绍了使用GEometry ANd Tracking 4(GEANT4)工具包进行的第一项研究,该研究与其他建模结果进行了定量比较,这些建模结果与地面伽玛射线闪光的产生和雷暴产生的高能粒子有关。我们将研究相对论失控电子雪崩(RREA)和相对论反馈过程,以及由失控电子产生的ms致辐射光子。蒙特卡洛模拟考虑了在250 eV至100 GeV能量范围内电子电离,电子逐电子(Møller)和正电子逐电子(Bhabha)散射以及the致辐射过程和成对产生的影响。我们的结果表明,在RREAs的发展过程中以及在反馈的影响下,电子的倍增与先前的估计一致。对于验证GEANT4作为在均匀电场中对RREA和反馈进行建模的工具而言,这一点很重要。我们还确定了stra致辐射光子与高能电子Nγ/ Ne的比率。然后,我们表明该比率与电场有关,这可以通过雪崩时间τ(E)和致辐射系数α(ε)来表示。此外,我们介绍了在1 keV至100 GeV能量范围内得到验证的,以“标准”和“低能量”物理列表进行的GEANT4模拟的比较。这种比较表明,GEANT4模拟中使用的物理列表的选择对结果有重大影响。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior = unordered prefix-word = mark-type = disc max-label-size = 0-> 使用GEANT4测试反馈机制 验证GEANT4编程工具包 研究TGF源高度altitude致辐射光子与电子的比值

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