论文标题

Blast-TNG低温接收器的表征,部署和机上表现

Characterization, deployment, and in-flight performance of the BLAST-TNG cryogenic receiver

论文作者

Lowe, Ian, Ade, Peter A. R., Ashton, Peter C., Austermann, Jason E., Coppi, Gabriele, Cox, Erin G., Devlin, Mark J., Dober, Bradley J., Fanfani, Valentina, Fissel, Laura M., Galitzki, Nicholas, Gao, Jiansong, Gordon, Samuel, Groppi, Christopher E., Hilton, Gene C., Hubmayr, Johannes, Klein, Jeffrey, Li, Dale, Lourie, Nathan P., Mani, Hamdi, Mauskopf, Philip, McKenney, Christopher, Nati, Federico, Novak, Giles, Pisano, Giampaolo, Romualdez, L. Javier, Soler, Juan D., Sinclair, Adrian, Tucker, Carole, Ullom, Joel, Vissers, Michael, Wheeler, Caleb, Williams, Paul A.

论文摘要

下一代气球传播的大型孔径亚毫米望远镜(BLAST-TNG)是一款亚毫米偏光仪,旨在在24天的南极飞行中以250、350、350和500微米的形式绘制星际灰尘和银河前景。 BLAST-TNG检测器阵列分别由918、469和272个MKID像素组成。像素是由两个正交定向的,交叉的,线性极化敏感的MKID天线形成的。将阵列冷却至300mk以下的温度,并通过封闭的周期稳定$^3 $ HE吸附冰箱,并结合$^4 $ He He真空锅。通过第二代可重新配置的开放式体系结构计算硬件(ROACH2)和为BLAST-TNG设计的自定义RF电子设备的组合,探测器的读数是通过读出的。这些探测器的固件和软件旨在读取和表征这些探测器,是由这些探测器周围的爆炸团队从头开始构建的,并已通过Toltec和Olimpo等其他MKID仪器进行调整。我们概述了这些系统以及基于地面表征和测量飞行内部性能的深入方法。

The Next Generation Balloon-borne Large Aperture Submillimeter Telescope (BLAST-TNG) is a submillimeter polarimeter designed to map interstellar dust and galactic foregrounds at 250, 350, and 500 microns during a 24-day Antarctic flight. The BLAST-TNG detector arrays are comprised of 918, 469, and 272 MKID pixels, respectively. The pixels are formed from two orthogonally oriented, crossed, linear-polarization sensitive MKID antennae. The arrays are cooled to sub 300mK temperatures and stabilized via a closed cycle $^3$He sorption fridge in combination with a $^4$He vacuum pot. The detectors are read out through a combination of the second-generation Reconfigurable Open Architecture Computing Hardware (ROACH2) and custom RF electronics designed for BLAST-TNG. The firmware and software designed to readout and characterize these detectors was built from scratch by the BLAST team around these detectors, and has been adapted for use by other MKID instruments such as TolTEC and OLIMPO. We present an overview of these systems as well as in-depth methodology of the ground-based characterization and the measured in-flight performance.

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