Literature DB >> 31186605

Energy calibration of high-resolution X-Ray TES microcalorimeters with 3 eV optical photons.

F T Jaeckel1, C V Ambarish1, N Christensen1, R Gruenke1, L Hu1, D McCammon1, M McPheron1, M Meyer1, K L Nelms1, A Roy1, D Wulf1, S Zhang1, Y Zhou1, J S Adams2, S R Bandler2, J A Chervenak2, A M Datesman2, M E Eckart2, A J Ewin2, F M Finkbeiner2, R Kelley2, C A Kilbourne2, A R Miniussi2, F S Porter2, J E Sadleir2, K Sakai2, S J Smith2, N Wakeham2, E Wassell2, W Yoon2, K M Morgan3, D R Schmidt3, D S Swetz3, J N Ullom3.   

Abstract

With the improving energy resolution of transitionedge sensor (TES) based microcalorimeters, performance verification and calibration of these detectors has become increasingly challenging, especially in the energy range below 1 keV where fluorescent atomic X-ray lines have linewidths that are wider than the detector energy resolution and require impractically high statistics to determine the gain and deconvolve the instrumental profile. Better behaved calibration sources such as grating monochromators are too cumbersome for space missions and are difficult to use in the lab. As an alternative, we are exploring the use of pulses of 3 eV optical photons delivered by an optical fiber to generate combs of known energies with known arrival times. Here, we discuss initial results of this technique obtained with 2 eV and 0.7 eV resolution X-ray microcalorimeters. With the 2 eV detector, we have achieved photon number resolution for pulses with mean photon number up to 133 (corresponding to 0.4 keV).

Keywords:  Calibration sources; Energy resolution; Microcalorimeters; Transition edge sensors; X-ray detectors

Year:  2019        PMID: 31186605      PMCID: PMC6557579          DOI: 10.1109/TASC.2019.2899856

Source DB:  PubMed          Journal:  IEEE Trans Appl Supercond


  1 in total

1.  Calibration and Testing of Small High-Resolution Transition Edge Sensor Microcalorimeters with Optical Photons.

Authors:  Felix T Jaeckel; C V Ambarish; Haoran Dai; Shukai Liu; Dan McCammon; Mari McPheron; Kari L Nelms; Avirup Roy; Haley R Stueber; Simon R Bandler; James A Chervenak; Kazuhiro Sakai; Stephen J Smith
Journal:  IEEE Trans Appl Supercond       Date:  2021-01-21
  1 in total

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