Hard X-ray polarimetry with Caliste, a high performance CdTe based imaging spectrometer
S. Antier, P. Ferrando, O. Limousin, E. Caroli, R. M. Curado da Silva,, C. Blondel, R. Chipaux, V. Honkimaki, B. Horeau, P. Laurent, J. M. Maia, A., Meuris, S. Del Sordo, J. B. Stephen

TL;DR
This paper demonstrates that Caliste-256 CdTe and CdZnTe detectors can accurately measure X-ray polarization, showing high modulation factors and precise polarization parameters, making them suitable for future space mission applications.
Contribution
The study provides experimental validation of Caliste-256 modules' capability to determine X-ray polarization parameters with high accuracy at 200-300 keV.
Findings
Modulation factor Q of 0.78 achieved.
Polarization angle and fraction measured with ~1° and 5% accuracy.
Performance remains high even with minimal data selection.
Abstract
Since the initial exploration of soft gamma-ray sky in the 60's, high-energy celestial sources have been mainly characterized through imaging, spectroscopy and timing analysis. Despite tremendous progress in the field, the radiation mechanisms at work in sources such as neutrons stars and black holes are still unclear. The polarization state of the radiation is an observational parameter which brings key additional information about the physical process. This is why most of the projects for the next generation of space missions covering the tens of keV to the MeV region require a polarization measurement capability. A key element enabling this capability is a detector system allowing the identification and characterization of Compton interactions as they are the main process at play. The hard X-ray imaging spectrometer module, developed in CEA with the generic name of Caliste module, is…
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