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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Adaptation of frequency-domain readout for Transition Edge Sensor bolometers for the POLARBEAR-2 Cosmic Microwave Background experiment
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Adaptation of frequency-domain readout for Transition Edge Sensor bolometers for the POLARBEAR-2 Cosmic Microwave Background experiment

机译:转换边缘传感器测辐射热计的频域读数用于POLARBEAR-2宇宙微波背景实验

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摘要

The POLARBEAR-2 Cosmic Microwave Background (CMB) experiment aims to observe B-mode polarization with high sensitivity to explore gravitational lensing of CMB and inflationary gravitational waves. POLARBEAR-2 is an upgraded experiment based on POLARBEAR-1, which had first light in January 2012. For POLARBEAR-2, we will build a receiver that has 7588 Transition Edge Sensor (TES) bolometers coupled to two-band (95 and 150 GHz) polarization-sensitive antennas. For the large array's readout, we employ digital frequency-domain multiplexing and multiplex 32 bolometers through a single superconducting quantum interference device (SQUID). An 8-bolometer frequency-domain multiplexing readout has been deployed with the POLARBEAR-1 experiment. Extending that architecture to 32 bolometers requires an increase in the bandwidth of the SOJJID electronics to 3 MHz. To achieve this increase in bandwidth, we use Digital Active Nulling (DAN) on the digital frequency multiplexing platform. In this paper, we present requirements and improvements on parasitic inductance and resistance of cryogenic wiring and capacitors used for modulating bolometers. These components are problematic above 1 MHz. We also show that our system is able to bias a bolometer in its superconducting transition at 3 MHz.
机译:POLARBEAR-2宇宙微波背景(CMB)实验旨在以高灵敏度观察B模式极化,以探索CMB的引力透镜和膨胀引力波。 POLARBEAR-2是在POLARBEAR-1的基础上进行的升级实验,于2012年1月首次亮相。对于POLARBEAR-2,我们将制造一款接收器,该接收器具有7588过渡边缘传感器(TES)辐射热测量计,该辐射热计耦合到两波段(95和150) GHz)极化敏感天线。对于大型阵列的读数,我们通过单个超导量子干扰设备(SQUID)采用数字频域复用和32个辐射热测量仪。 POLARBEAR-1实验已部署了8辐射热测量器频域多路复用读数。要将该架构扩展到32个辐射热计,就需要将SOJJID电子设备的带宽增加到3 MHz。为了实现带宽的增加,我们在数字频率复用平台上使用了数字有源调零(DAN)。在本文中,我们提出了对用于调制辐射热计的低温布线和电容器的寄生电感和电阻的要求和改进。这些组件在1 MHz以上存在问题。我们还表明,我们的系统能够在3 MHz的超导跃迁中对辐射热计进行偏置。

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