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  5. Simulation of Radiative Transfer Within X-ray Microcalorimeter Absorbers
 

Simulation of Radiative Transfer Within X-ray Microcalorimeter Absorbers

Journal
JOURNAL OF LOW TEMPERATURE PHYSICS  
Date Issued
2022
Author(s)
Lorenz, M.
•
Kirsch, C.
•
Peille, P.
•
Ballhausen, R.
•
FIORETTI, Valentina  
•
LOTTI, Simone  
•
Dauser, T.
•
Wilms, J.
DOI
10.1007/s10909-022-02754-4
Abstract
We present Monte Carlo simulations of radiative transfer within the absorbers of X-ray microcalorimeters, utilizing a numerical model for the photon propagation and photon absorption process within the absorber structure. In our model, we include effects of Compton scattering off bound electrons and fluorescence. Scattered or fluorescence photons as well as Auger and photoelectrons escaping the absorber can result in partial energy depositions. By implementing a simplified description of the physical processes compared to existing comprehensive particle transport software frameworks, our model aims to provide representative results at a small computational effort. This approach makes it possible to use our model for quick assessments, parametric studies, and application in other Monte Carlo-based instrument simulators like SIXTE, a software package for X-ray astronomical instrumentation. To study the impact of the energy loss effects on the spectral response of a microcalorimeter, we apply our model to the sensors of the cryogenic X-ray spectrometer X-IFU onboard the future Athena X-ray observatory.
Volume
209
Issue
3-4
Start page
464
Uri
http://hdl.handle.net/20.500.12386/34305
Url
https://api.elsevier.com/content/abstract/scopus_id/85131535740
https://link.springer.com/article/10.1007/s10909-022-02754-4
Issn Identifier
0022-2291
Rights
open.access
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