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Potentialities of CdZnTe Quasi-Hemispherical Detectors for Hard X-ray Spectroscopy of Kaonic Atoms at the DAFNE Collider

Academic Article
Publication Date:
2023
abstract:
Kaonic atom X-ray spectroscopy is a consolidated technique for investigations on the physics of strong kaon-nucleus/nucleon interaction. Several experiments have been conducted regarding the measurement of soft X-ray emission (<20 keV) from light kaonic atoms (hydrogen, deuterium, and helium). Currently, there have been new research activities within the framework of the SIDDHARTA-2 experiment and EXCALIBUR proposal focusing on performing precise and accurate measurements of hard X-rays (>20 keV) from intermediate kaonic atoms (carbon, aluminum, and sulfur). In this context, we investigated cadmium-zinc-telluride (CdZnTe or CZT) detectors, which have recently demonstrated high-resolution capabilities for hard X-ray and gamma-ray detection. A demonstrator prototype based on a new cadmium-zinc-telluride quasi-hemispherical detector and custom digital pulse processing electronics was developed. The detector covered a detection area of 1 cm(2) with a single readout channel and interesting room-temperature performance with energy resolution of 4.4% (2.6 keV), 3% (3.7 keV), and 1.4% (9.3 keV) FWHM at 59.5, 122.1, and 662 keV, respectively. The results from X-ray measurements at the DAfNE collider at the INFN National Laboratories of Frascati (Italy) are also presented with particular attention to the effects and rejection of electromagnetic and hadronic background.
Iris type:
01.01 Articolo in rivista
Keywords:
CdZnTe detectors; quasi-hemispherical detectors; compound semiconductor detectors; hard X-ray spectroscopy; kaonic atoms; digital pulse processing electronics
List of contributors:
Zappettini, Andrea; Bettelli, Manuele
Authors of the University:
BETTELLI MANUELE
ZAPPETTINI ANDREA
Handle:
https://iris.cnr.it/handle/20.500.14243/430766
Published in:
SENSORS (BASEL)
Journal
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URL

https://www.mdpi.com/1424-8220/23/17/7328
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