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Multiplexing Readout of TES Microcalorimeters Based on Analog Baseband Feedback

机译:基于模拟基带反馈的TES微量微量计复用读数

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A TES microcalorimeter array is a promising spectrometer with excellent energy resolution and a moderate imaging capability. To realize a large format array in space, multiplexing the TES signals at the low tempersture stage is mandatory. We are developing frequency division multiplexing (FDM) based on baseband feedback technique. In FDM, each TES is AC-biased with a different carrier frequency. Signals from several pixels are summed and then read out by one SQUID. The maximum number of multiplexed pixels are limited by the frequency band in which the SQUID can be operated in a flux-locked loop, which is 1 MHz with standard flux-locked loop circuit. In the baseband feedback, the signal ( 10 kHz band) from the TES is once demodulated. then a reconstructed copy of the modulated signal with an appropriate phase is fed back to the SQUID input coil to maintain an approximately constant magnetic flux. This can be implemented even for large cable delays and automatically suppresses the carrier. We developed a prototype electronics for the baseband feedback based on an analog phase sensitive detector (PSD) and a multiplier. Combined with Seiko 80-SSA SQUID amp, open-loop gain of 8 has been obtained for 10 kHz baseband signal at 5 MHz carrier frequency, with a moderate noise contribution of 27 pA A/Hz at input.
机译:TES微量高压仪阵列是具有优异能量分辨率和中等成像能力的有希望的光谱仪。为了在空间中实现大型格式阵列,强制性地复用低临时阶段的TES信号是强制性的。我们正在基于基带反馈技术开发频分复用(FDM)。在FDM中,每个TES具有不同的载波频率偏置。求和来自几个像素的信号,然后通过一个鱿鱼读出。多路复用像素的最大数量受到频段的限制,其中鱿鱼可以在磁通锁相环中操作,这是具有标准磁通锁定环路的1MHz。在基带反馈中,来自TES的信号(10kHz频带)曾经解调。然后将调制信号与适当的相位的重构副本被反馈到SQUID输入线圈以保持大致恒定的磁通量。即使大电缆延迟也可以实现这一点,并自动抑制载波。我们开发了基于模拟相位敏感检测器(PSD)和乘法器的基带反馈的原型电子设备。结合Seiko 80-SSA Squid AMP,已经获得了5 kHz载波频率的10kHz基带信号的开环增益,输入了27Pa A / Hz的适度噪声贡献。

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