Development of an X-ray polarimeter at the SOLEIL Synchrotron

Fuente: arXiv
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Main Authors: Manzanillas, L., Ablett, J. M., Choukroun, M., Iguaz, F. J., Rueff, J. P.
Format: Preprint
Published: 2023
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author Manzanillas, L.
Ablett, J. M.
Choukroun, M.
Iguaz, F. J.
Rueff, J. P.
author_facet Manzanillas, L.
Ablett, J. M.
Choukroun, M.
Iguaz, F. J.
Rueff, J. P.
contents Synchrotron radiation facilities provide highly polarized X-ray beams across a wide energy range. However, the exact type and degree of polarization varies according to the beamline and experimental setup. To accurately determine the angle and degree of linear polarization, a portable X-ray polarimeter has been developed. This setup consists of a Silicon Drift Detector that rotates around a target made of high-density polyethylene. The imprint generated in the angular distribution of scattered photons at a 90-degree angle from the target has been exploited to determine the beam polarization. Measurements were conducted at the GALAXIES beamline of the SOLEIL Synchrotron. The expected angular distribution of the scattered photons for a given beam polarization was obtained through simulations using the Geant4 simulation toolkit. An excellent agreement between simulations and the collected data has been obtained, validating the setup and enabling a precise determination of the beam polarization.
format Preprint
id arxiv_https___arxiv_org_abs_2309_05587
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Development of an X-ray polarimeter at the SOLEIL Synchrotron
Manzanillas, L.
Ablett, J. M.
Choukroun, M.
Iguaz, F. J.
Rueff, J. P.
Instrumentation and Detectors
High Energy Physics - Experiment
Synchrotron radiation facilities provide highly polarized X-ray beams across a wide energy range. However, the exact type and degree of polarization varies according to the beamline and experimental setup. To accurately determine the angle and degree of linear polarization, a portable X-ray polarimeter has been developed. This setup consists of a Silicon Drift Detector that rotates around a target made of high-density polyethylene. The imprint generated in the angular distribution of scattered photons at a 90-degree angle from the target has been exploited to determine the beam polarization. Measurements were conducted at the GALAXIES beamline of the SOLEIL Synchrotron. The expected angular distribution of the scattered photons for a given beam polarization was obtained through simulations using the Geant4 simulation toolkit. An excellent agreement between simulations and the collected data has been obtained, validating the setup and enabling a precise determination of the beam polarization.
title Development of an X-ray polarimeter at the SOLEIL Synchrotron
topic Instrumentation and Detectors
High Energy Physics - Experiment
url https://arxiv.org/abs/2309.05587