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Development of frequency domain multiplexing for the X-ray Integral Field Unit (X-IFU) on the Athena

机译:雅典娜X射线积分场单元(X-IFU)频域复用的开发

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We are developing the frequency domain multiplexing (FDM) read-out of transition-edge sensor (TES) microcalorimeters for the X-ray Integral Field Unit (X-IFU) instrument on board of the future European X-Ray observatory Athena. The X-IFU instrument consists of an array of ~3840 TESs with a high quantum efficiency (>90 %) and spectral resolution ΔE=2.5 eV @ 7 keV (E/ΔE ~2800). FDM is currently the baseline readout system for the X-IFU instrument. Using high quality factor LC filters and room temperature electronics developed at SRON and low-noise two stage SQUID amplifiers provided by VTT, we have recently demonstrated good performance with the FDM readout of Mo/Au TES calorimeters with Au/Bi absorbers. An integrated noise equivalent power resolution of about 2.0 eV at 1.7 MHz has been demonstrated with a pixel from a new TES array from NASA/Goddard (GSFC-A2). We have achieved X-ray energy resolutions ~2.5 eV at AC bias frequency at 1.7 MHz in the single pixel read-out. We have also demonstrated for the first time an X-ray energy resolution around 3.0 eV in a 6 pixel FDM read-out with TES array (GSFC-A1). In this paper we report on the single pixel performance of these microcalorimeters under MHz AC bias, and further results of the performance of these pixels under FDM.
机译:我们正在开发的频域复用(FDM)读出过渡边缘传感器(TES)微量热的X射线积分现场单元(X-IFU)仪器上的未来欧洲X射线天文台雅典娜板。的X IFU仪器由〜3840个TESS的阵列具有高量子效率(> 90%)和光谱分辨率ΔE= 2.5eV的@ 7千电子伏(E /ΔE〜2800)的。 FDM目前是X-IFU仪器基线读出系统。使用VTT提供的SRON开发的高品质因数LC滤波器和常温电子产品和低噪声的两级放大器SQUID,我们最近证明了Mo /金TES热量表用Au /铋吸收的FDM读出良好的性能。约2.0电子伏特的在1.7兆赫的集成噪声等效功率分辨率已证实与来自NASA /戈达德(GSFC-A2)的新TES阵列的像素。我们已经实现了X射线的能量分辨率〜2.5eV的在AC偏压频率在单个像素1.7兆赫读出。我们还证明首次周围为3.0eV的X射线的能量分辨率在6像素FDM读出与TES阵列(GSFC-A1)。在本文中,我们对下MHz的AC偏压这些微量热,和FDM下这些像素的性能进一步结果的单个像素业绩报告。

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