论文标题

由于宇宙射线的轨道上自由落体测试量的充电:Lisa Pathfinder的结果

Charging of free-falling test masses in orbit due to cosmic rays: results from LISA Pathfinder

论文作者

LISA Pathfinder Collaboration, Armano, M., Audley, H., Baird, J., Binetruy, P., Born, M., Bortoluzzi, D., Castelli, E., Cesarini, A. Cavalleri A., Cruise, A. M, Danzmann, K., Silva, M. de Deus, Diepholz, I., Dixon, G., Dolesi, R., Ferraioli, L., Ferroni, V., Fitzsimons, E. D., Freschi, M., Gesa, L., Giardini, D., Gibert, F., Giusteri, R., Grimani, C., Grzymisch, J., Harrison, I., Hartig, M. -S., Heinzel, G., Hewitson, M., Hollington, D., Hoyland, D., Hueller, M., Inchauspé, H., Jennrich, O., Jetzer, P., Karnesis, N., Kaune, B., Killow, C. J., Korsakova, N., Lobo, J. A., López-Zaragoza, J. P., Maarschalkerweerd, R., Mance, D., Martín, V., Martino, J., Martin-Polo, L., Martin-Porqueras, F., McNamara, P. W., Mendes, J., Mendes, L., Meshksar, N., Nofrarias, M., Paczkowski, S., Perreur-Lloyd, M., Petiteau, A., Plagnol, E., Ramos-Castro, J., Reiche, J., Rivas, F., Robertson, D. I., Russano, G., Slutsky, J., Sopuerta, C. F., Sumner, T. J., Texier, D., Thorpe, J. I., Vetrugno, D., Vitale, S., Wanner, G., Ward, H., Wass, P. J., Weber, W. J., Wissel, L., Wittchen, A., Zweifel, P.

论文摘要

列出了丽莎探路者任务期间由于空间环境而导致的测量质量充电的全面摘要。通过抓取和定位机制释放测试量的剩余电荷的测量结果表明,测试量的初始电荷在所有发行后为负,使测试质量的潜力在$ -12 $ -12 $ MV的范围内至$ -512 $ -512 $ MV。中性测试质量充电率在$ 21.7 $ e s $^{ - 1} $和$ 30.7 $ e S $^{ - 1} $之间的变化是在宇宙射线磁通量所产生的17个月科学操作的过程中,包括与小型Solar Enerar Enterar Entrar enerar Entrar弹药相关。宇宙射线充电率的依赖性在$ -30.2 $ e s $ s $^{ - 1} $ v $^{ - 1} $和$ -40.3 $ e s $ s $^{ - 1} $ v $^{ - 1} $之间的依赖性被观察到,这归因于从低 - 狂热的golded golds golds golds golds golds golds golds golds golds golds golds golds golds。板载粒子检测器的数据显示与充电率以及宇宙射线通量的其他环境监测器有着可靠的相关性。利用这种相关性将测试质量充电率推送到20年期,从而有用的洞察力对丽莎任务中可能观察到的预期充电率范围有用。

A comprehensive summary of the measurements made to characterize test mass charging due to the space environment during the LISA Pathfinder mission is presented. Measurements of the residual charge of the test mass after release by the grabbing and positioning mechanism, show that the initial charge of the test masses was negative after all releases, leaving the test mass with a potential in the range $-12$ mV to $-512$ mV. Variations in the neutral test mass charging rate between $21.7$ e s$^{-1}$ and $30.7$ e s$^{-1}$ were observed over the course of the 17-month science operations produced by cosmic ray flux changes including a Forbush decrease associated with a small solar energetic particle event. A dependence of the cosmic ray charging rate on the test mass potential between $-30.2$ e s$^{-1}$ V$^{-1}$ and $-40.3$ e s$^{-1}$ V$^{-1}$ was observed and this is attributed to a contribution to charging from low-energy electrons emitted from the gold surfaces of the gravitational reference sensor. Data from the on-board particle detector show a reliable correlation with the charging rate and with other environmental monitors of the cosmic ray flux. This correlation is exploited to extrapolate test mass charging rates to a 20-year period giving useful insight into the expected range of charging rate that may be observed in the LISA mission.

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