论文标题

天线耦合TES阵列的粒子响应:蜘蛛和实验室的结果

Particle response of antenna-coupled TES arrays: results from SPIDER and the lab

论文作者

Osherson, B., Filippini, J. P., Fu, J., Gramillano, R. V., Gualtieri, R., Shaw, E. C., Ade, P. A. R., Amiri, M., Benton, S. J., Bock, J. J., Bond, J. R., Bryan, S. A., Chiang, H. C., Contaldi, C. R., Dore, O., Fraisse, A. A., Gambrel, A. E., Gandilo, N. N., Gudmundsson, J. E., Halpern, M., Hartley, J., Hasselfield, M., Hilton, G., Holmes, W., Hristov, V. V., Irwin, K. D., Jones, W. C., Kermish, Z. D., Mason, P. V., Megerian, K., Moncelsi, L., Morford, T. A., Nagy, J. M., Netterfield, C. B., Padilla, I. L., Rahlin, A. S., Reintsema, C., Ruhl, J. E., Runyan, M. C., Shariff, J. A., Soler, J. D., Trangsrud, A., Tucker, C., Tucker, R. S., Turner, A. D., Weber, A. C., Wiebe, D. V., Young, E. Y.

论文摘要

未来的MM波和子MM空间任务将采用大量的多路复用过渡边缘传感器(TES)凸电计阵列。这样的仪器必须与我们大气中的宇宙射线的高通量抗衡,这些射线超出了我们的大气,这些射线在钢计数据中引起了“小故障”,这对来自普朗克垫体的数据分析提出了挑战。未来的仪器将面临共享基板晶圆和多重读数接线的其他挑战。在这项工作中,我们使用两个数据集探索了现代TES阵列对空间宇宙射线环境的敏感性:2015年的蜘蛛宇宙微波背景偏光仪的长期持续气球飞行以及蜘蛛飞行硬件的实验室暴露于放射性源。我们发现可管理的故障率和短路持续时间,导致对蜘蛛分析的影响最小。我们通过对多探测器的一致性的研究来限制底物内的能量传播,并初步了解实验室数据中的脉冲形状。

Future mm-wave and sub-mm space missions will employ large arrays of multiplexed Transition Edge Sensor (TES) bolometers. Such instruments must contend with the high flux of cosmic rays beyond our atmosphere that induce "glitches" in bolometer data, which posed a challenge to data analysis from the Planck bolometers. Future instruments will face the additional challenges of shared substrate wafers and multiplexed readout wiring. In this work we explore the susceptibility of modern TES arrays to the cosmic ray environment of space using two data sets: the 2015 long-duration balloon flight of the SPIDER cosmic microwave background polarimeter, and a laboratory exposure of SPIDER flight hardware to radioactive sources. We find manageable glitch rates and short glitch durations, leading to minimal effect on SPIDER analysis. We constrain energy propagation within the substrate through a study of multi-detector coincidences, and give a preliminary look at pulse shapes in laboratory data.

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