Title: Advanced Energy Scale Correction Techniques for the X-ray Transition Edge Sensors of the Athena mission

Journal Article · · Journal of Low Temperature Physics
 [1];  [2];  [3];  [4];  [5];  [1];  [2]
  1. Center National d’Etudes Spatiales (CNES) (France)
  2. NASA Goddard Space Flight Center (GSFC), Greenbelt, MD (United States)
  3. NASA Goddard Space Flight Center (GSFC), Greenbelt, MD (United States); ADNET Systems, Inc., Bethesda, MD (United States)
  4. Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)
  5. Research Institute in Astrophysics and Planetology (France)

The X-ray Integral Field Unit (X-IFU) onboard the future European X-ray telescope Athena will be the first space instrument carrying an array of more than a thousand transition edge sensors. One of the key challenges of the X-IFU is the measurement of narrow X-ray atomic lines to determine velocity shifts at an unprecedented level of accuracy. For this reason, the energy scale of the instrument needs to be known with extreme accuracy, of 0.4 eV (1σ) up to 7 keV. The energy scale will be measured on the ground through a dedicated calibration campaign using fiducial X-ray sources. Though calibrated, the energy scale is extremely sensitive to the environmental conditions around the TES array, and drifts in the readout chain electronics. Uncorrected, the energy scale can naturally drift up to hundreds of eVs. Changes of the TES gain will be monitored via onboard X-ray calibration sources, and the energy scale will be corrected either per pixel, or within a small groups of pixels. Although simulations show that a 0.4 eV level can be achieved, the very high accuracy required by the X-IFU calls for experimental validation. A dedicated measurement campaign has been performed by NASA Goddard Space Flight Center to characterize the energy scale of a prototype kilo-pixel array of X-IFU-representative TESs. The analysis of the data demonstrated the ability to correct for various drifts using two fiducial lines to track the temporal gain variation. In this paper, we propose to extend this study on the same data set by investigating multi-parameter correction techniques based on both the pulse-height of the fiducial line and the prepulse baseline level, using the knowledge of the TES energy scale at reference temperature/magnetic field set points acquired on the ground. Investigations on the co-adding of pixels to perform a joint correction over pools of pixels is also explored.

Research Organization:
Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)
Sponsoring Organization:
USDOE National Nuclear Security Administration (NNSA)
Grant/Contract Number:
AC52-07NA27344
OSTI ID:
2559046
Report Number(s):
LLNL-JRNL-2004803
Journal Information:
Journal of Low Temperature Physics, Journal Name: Journal of Low Temperature Physics Journal Issue: 1-2 Vol. 216; ISSN 0022-2291
Publisher:
Springer NatureCopyright Statement
Country of Publication:
United States
Language:
English

References (22)

The Athena X-ray Integral Field Unit: a consolidated design for the system requirement review of the preliminary definition phase journal January 2023
Temporal Gain Correction for X-ray Calorimeter Spectrometers journal January 2016
Multi-parameter Nonlinear Gain Correction of X-ray Transition Edge Sensors for the X-ray Integral Field Unit journal April 2018
Performance of an X-ray Microcalorimeter with a 240 μm Absorber and a 50 μm TES Bilayer journal May 2018
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Experimental and theoretical determination of the Kα 2 / Kα 1 intensity ratio for zinc journal January 2015
Measuring turbulence and gas motions in galaxy clusters via synthetic Athena X-IFU observations journal October 2018
Athena X-IFU synthetic observations of galaxy clusters to probe the chemical enrichment of the Universe journal December 2018
Diagram and Nondiagram Lines in K Spectra of Aluminum and Oxygen from Metallic and Anodized Aluminum journal February 1965
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Characterization of K α spectral profiles for vanadium, component redetermination for scandium, titanium, chromium, and manganese, and development of satellite structure for Z = 21 to Z = 25 journal January 2006
Kα1,2x-ray linewidths, asymmetry indices, and[KM]shake probabilities in elements Ca to Ge and comparison with theory for Ca, Ti, and Ge journal October 2016
X-Ray Wavelengths journal January 1967
Correcting Gain Drift in TES Detectors for Future X-Ray Satellite Missions journal August 2023
Calibration sources and filters of the soft x-ray spectrometer instrument on the Hitomi spacecraft journal October 2017
The impact of crosstalk in the X-IFU instrument on Athena science cases conference July 2016
Ground calibration of the Astro-H (Hitomi) soft x-ray spectrometer conference September 2016
Development status of the wide field imager instrument for Athena conference December 2020
Pulse processing in TES detectors: comparative of different short filter methods based on optimal filtering: case study for Athena X-IFU conference December 2020

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