论文标题

二头肌阵列的40-GHz检测器和模块的光学设计和表征

Optical Design and Characterization of 40-GHz Detector and Module for the BICEP Array

论文作者

Soliman, A., Ade, P. A. R., Ahmed, Z., Amiri, M., Barkats, D., Thakur, R. Basu, Bischoff, C. A., Bock, J. J., Boenish, H., Bullock, E., Buza, V., Cheshire, J., Connors, J., Cornelison, J., Crumrine, M., Cukierman, A., Dierickx, M., Duband, L., Fatigoni, S., Filippini, J. P., Hall, G., Halpern, M., Harrison, S., Henderson, S., Hildebrandt, S. R., Hilton, G. C., Hui, H., Irwin, K. D., Kang, J., Karkare, K. S., Karpel, E., Kefeli, S., Kovac, J. M., Kuo, C. L., Lau, K., Megerian, K. G., Moncelsi, L., Namikawa, T., Nguyen, H. T., OBrient, R., Palladino, S., Prouve, T., Precup, N., Pryke, C., Racine, B., Reintsema, C. D., Richter, S., Schmitt, B., Schwarz, R., Sheehy, C. D., Schillaci, A., Germaine, T. St., Steinbach, B., Sudiwala, R. V., Thompson, K. L., Tucker, C., Turner, A. D., Umilta, C., Vieregg, A. G., Wandui, A., Weber, A. C., Wiebe, D. V., Willmert, J., Wu, W. L. K., Yang, E., Yoon, K. W., Young, E., Yu, C., Zhang, C.

论文摘要

宇宙通货膨胀模型的家族预测了原始重力波背景,该背景在宇宙微波背景(CMB)中贴上了B模式极化模式。需要高频率覆盖率和良好控制的系统误差以限制微弱的B模式振幅。我们已经开发了天线耦合的过渡边缘传感器(TES)阵列,用于在宽毫米波带上进行高敏性极化CMB观测值。二头肌阵列是二头肌/凯克实验系列的最新阶段,是一个多接收器实验,旨在在整整3年的观察结果之后,在0.002至0.004之间搜索通货膨胀B模式极化,取决于前景的复杂性和镜头拆卸程度。我们描述了二头肌阵列低频40 GHz检测器的电磁设计和测量性能,它们在焦平面模块中的包装以及光学表征,包括极化对之间的效率和光束匹配。我们总结了设计和模拟的光学性能,包括通过不匹配损失而提高光学效率的方法。我们报告了新的宽带波纹设计的测量光束图,以最大程度地减少与模块外壳框架相互作用引起的极化对之间的光束差异椭圆形,这有助于最大程度地减少CMB温度转换为极化($ t \ rightArrow P $)的极化光束不匹配。

Families of cosmic inflation models predict a primordial gravitational-wave background that imprints B-mode polarization pattern in the Cosmic Microwave Background (CMB). High sensitivity instruments with wide frequency coverage and well-controlled systematic errors are needed to constrain the faint B-mode amplitude. We have developed antenna-coupled Transition Edge Sensor (TES) arrays for high-sensitivity polarized CMB observations over a wide range of millimeter-wave bands. BICEP Array, the latest phase of the BICEP/Keck experiment series, is a multi-receiver experiment designed to search for inflationary B-mode polarization to a precision $σ$(r) between 0.002 and 0.004 after 3 full years of observations, depending on foreground complexity and the degree of lensing removal. We describe the electromagnetic design and measured performance of BICEP Array low-frequency 40-GHz detector, their packaging in focal plane modules, and optical characterization including efficiency and beam matching between polarization pairs. We summarize the design and simulated optical performance, including an approach to improve the optical efficiency due to mismatch losses. We report the measured beam maps for a new broad-band corrugation design to minimize beam differential ellipticity between polarization pairs caused by interactions with the module housing frame, which helps minimize polarized beam mismatch that converts CMB temperature to polarization ($T \rightarrow P$) anisotropy in CMB maps.

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