论文标题

低能电磁过程影响LISA和未来空间干涉仪的自由落体测试质量充电

Low-energy electromagnetic processes affecting free-falling test-mass charging for LISA and future space interferometers

论文作者

Grimani, Catia, Cesarini, Andrea, Fabi, Michele, Villani, Mattia

论文摘要

银河宇宙射线和太阳能颗粒在板上干涉仪上充电金铂,自由落体测试质量(TMS),用于检测太空中的重力波。充电过程在测试群体上引起了伪造力,这些力量影响了这些仪器的灵敏度,主要低于$ 10^{ - 3} $ Hz。进行了Geant4和Fluka Monte Carlo模拟,以研究2016年至2017年之间在Sun-Realth Lagrange点L1周围留在轨道上的TM充电过程。在TMS NET充电的模拟和测量之间观察到了良好的一致性,而TMS NET的测量值与较高的射击噪声相关,则较高的差异和较高的差异为4-较高的差异。该不匹配的起源归因于模拟中仅100 eV的电子和光子的传播。在本文中,考虑了未来的LISA和LISA样空间干涉仪TM充电的蒙特卡洛模拟中的低能电磁过程。 {发现低于100 eV的电子和光子为有效充电提供了与该能量高于该能量的整个颗粒样本相当的电荷。特别是,对于入射质子,离子化在低能动力学发射和电子反向散射方面贡献了两倍。发现其他过程扮演着可以忽略的角色。对于重核,只能考虑溅射。

Galactic cosmic rays and solar energetic particles charge gold-platinum, free-falling test masses (TMs) on board interferometers for the detection of gravitational waves in space. The charging process induces spurious forces on the test masses that affect the sensitivity of these instruments mainly below $10^{-3}$ Hz. Geant4 and FLUKA Monte Carlo simulations were carried out to study the TM charging process on board the LISA Pathfinder mission that remained into orbit around the Sun-Earth Lagrange point L1 between 2016 and 2017. While a good agreement was observed between simulations and measurements of the TMs net charging, the shot noise associated with charging fluctuations of both positive and negative particles resulted 3-4 times higher that predicted. The origin of this mismatch was attributed to the propagation of electrons and photons only above 100 eV in the simulations. In this paper, low-energy electromagnetic processes to be included in the future Monte Carlo simulations for LISA and LISA-like space interferometers TM charging are considered. {It is found that electrons and photons below 100 eV give a contribution to the effective charging comparable to that of the whole sample of particles above this energy. In particular, for incident protons ionization contributes twice with respect to low energy kinetic emission and electron backscattering. The other processes are found to play a negligible role. For heavy nuclei only sputtering must be considered.

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