Extended Line Spread Function of TES Microcalorimeters With Au/Bi Absorbers

Microcalorimeters have the potential to provide line shapes well described by a single Gaussian broadening term of few-eV width. This attribute makes the detectors especially well suited for x-ray astrophysics observations; however, low-level non-Gaussian broadening terms are expected and must be ch...

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Veröffentlicht in:IEEE transactions on applied superconductivity 2019-08, Vol.29 (5), p.1-5
Hauptverfasser: Eckart, Megan E., Adams, Joseph S., Bandler, Simon R., Beaumont, Sophie, Chervenak, James A., Datesman, Aaron M., Finkbeiner, Fred M., Hummatov, Ruslan, Kelley, Richard L., Kilbourne, Caroline A., Leutenegger, Maurice A., Miniussi, Antoine R., Moseley, Samuel J., Porter, F. Scott, Sadleir, John E., Sakai, Kazuhiro, Smith, Stephen J., Wakeham, Nicholas A., Wassell, Edward J.
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Sprache:eng
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Zusammenfassung:Microcalorimeters have the potential to provide line shapes well described by a single Gaussian broadening term of few-eV width. This attribute makes the detectors especially well suited for x-ray astrophysics observations; however, low-level non-Gaussian broadening terms are expected and must be characterized. These terms depend on the composition of the x-ray absorber, the detailed x-ray absorption physics, the device thermalization processes, and the incident x-ray energy. Here we present the first measurements targeted at understanding the extended line-spread function (LSF) of x-ray microcalorimeter pixels under development for the X-ray Integral Field Unit on the Athena X-ray Observatory. These pixels are composed of Mo/Au transition-edge sensors with overhanging electroplated Au/Bi absorbers. We have measured the line shapes using monochromatic x-ray sources with
ISSN:1051-8223
1558-2515
DOI:10.1109/TASC.2019.2903420