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SQUID multiplexing using baseband feedback for space application oftransition-edge sensor microcalorimeters

机译:使用基带反馈进行SQUID复用,用于过渡边缘传感器量热仪的空间应用

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摘要

A microcalorimeter array based on a transition-edge sensor (TES) thermometer is a promising imaging spectrometer for use in future x-ray astronomy missions. A TES microcalorimeter achieves <5 eV energy resolution and an array of >100 pixels also provides a moderate imaging capability. For a large format array, signal multiplexing at the low temperature stage is mandatory in order to reduce heat loads from cold stage preamplifiers and through wirings. We are developing frequency division multiplexing (FDM). In FDM, each TES is ac-biased with a different carrier frequency. Signals from several pixels are summed and then read out by one dc SQUID (superconducting quantum interference device). The maximum number of multiplexed pixels is limited by the bandwidth of a SQUID in a flux-locked loop. Assuming 1 m cable length between the room temperature and the cold stage, the bandwidth is only <1 MHz with a standard flux-locked loop, due to the delay and phase shift of wirings. We report our development of baseband feedback, a new feedback scheme that overcomes the andwidth limitation. In baseband feedback, the signal (<10 kHz) from the TES is sent back to the SQUID after the phase of carrier frequency (~1 MHz) has been adjusted. We demonstrated open-loop gain of 8 for 10 kHz signal at 5 MHz carrier frequency, which indicates the possibility of ~40-pixel multiplexing of the TES signal.
机译:基于过渡边缘传感器(TES)温度计的微热量计阵列是一种有前途的成像光谱仪,可用于未来的X射线天文学任务。 TES微量热量计可实现<5 eV的能量分辨率,并且> 100像素的阵列还具有中等成像能力。对于大型阵列,为了降低冷级前置放大器和布线的热负荷,必须在低温级进行信号多路复用。我们正在开发频分复用(FDM)。在FDM中,每个TES都有不同的载波频率偏置。来自几个像素的信号相加,然后由一个dc SQUID(超导量子干涉装置)读出。通量锁定环路中,SQUID的带宽限制了多路复用像素的最大数量。假设室温和寒冷阶段之间的电缆长度为1 m,则由于布线的延迟和相移,带标准磁通锁定环路的带宽仅为<1 MHz。我们报告了基带反馈的发展,这是一种克服了带宽限制的新反馈方案。在基带反馈中,在调整了载波频率(〜1 MHz)的相位之后,来自TES的信号(<10 kHz)被发送回SQUID。我们展示了在5 MHz载波频率下10 kHz信号的开环增益为8,这表明TES信号有约40像素复用的可能性。

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