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Implementation of frequency domain multiplexing in imaging arrays of microcalorimeters

机译:微量热量计成像阵列中频域复用的实现

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摘要

Frequency domain multiplexing (FDM) is an attractive approach to reading out imaging arrays of transition edge sensor (TES) based microcalorimeters. We are developing a FDM readout system compatible with the specifications as defined for ESA's XEUS mission. FDM is implemented by using the TES as amplitude modulator of its alternating voltage bias source. A single superconducting quantum interference device current amplifier is used to amplify multiple TES signals, which are separated in frequency space by superconducting LC bandpass filters. The scalability of this concept is bounded by parasitic effects. In this paper, the origin and implications of the parasitic effects will be treated. Among the effects are common inductances and magnetic coupling between noise blocking bandpass LC filters. Both effects lead to cross talk and limit the available bandwidth for multiplexing. Quantitative estimates of these effects are given. Furthermore, the required accuracies of the noise blocking bandpass filters are discussed, as well as bias source topologies.
机译:频域复用(FDM)是一种有吸引力的方法,用于读取基于过渡边缘传感器(TES)的微热量计的成像阵列。我们正在开发一种FDM读出系统,该系统与ESA XEUS任务所定义的规范兼容。 FDM通过使用TES作为其交流偏压源的幅度调制器来实现。单个超导量子干扰器件电流放大器用于放大多个TES信号,这些信号在频率空间中通过超导LC带通滤波器分离。这个概念的可扩展性受到寄生效应的限制。在本文中,将讨论寄生效应的起源和含义。这些影响包括噪声阻挡带通LC滤波器之间的公共电感和磁耦合。两种效果都会导致串扰并限制多路复用的可用带宽。给出了这些影响的定量估计。此外,讨论了噪声阻挡带通滤波器的要求精度以及偏置源拓扑。

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