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Eliminating the non-Gaussian spectral response of X-ray absorbers for transition-edge sensors

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arxiv 1708.08481 v1 pith:EB3IWO2O submitted 2017-08-28 physics.ins-det

Eliminating the non-Gaussian spectral response of X-ray absorbers for transition-edge sensors

classification physics.ins-det
keywords bismuthabsorbersgoldx-raytesselectroplatedevaporatedfabricated
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Transition-edge sensors (TES) as microcalorimeters for high-energy-resolution X-ray spectroscopy are often fabricated with an absorber made of materials with high Z (for X-ray stopping power) and low heat capacity (for high resolving power). Bismuth represents one of the most compelling options. TESs with evaporated bismuth absorbers have shown spectra with undesirable and unexplained low-energy tails. We have developed TESs with electroplated bismuth absorbers over a gold layer that are not afflicted by this problem and that retain the other positive aspects of this material. To better understand these phenomena, we have studied a series of TESs with gold, gold/evaporated bismuth, and gold/electroplated bismuth absorbers, fabricated on the same die with identical thermal coupling. We show that bismuth morphology is linked to the spectral response of X-ray TES microcalorimeters.

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