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Potentialities of CdZnTe Quasi-Hemispherical Detectors for Hard X-ray Spectroscopy of Kaonic Atoms at the DAΦNE Collider. | LitMetric

AI Article Synopsis

  • Kaonic atom X-ray spectroscopy helps explore the strong interactions between kaons and atomic nuclei/nucleons, using soft X-ray emissions (<20 keV) from light kaonic atoms like hydrogen and helium as well as ongoing research for harder X-ray emissions (>20 keV) from intermediate kaonic atoms like carbon and aluminum.
  • New experiments, particularly the SIDDHARTA-2 and EXCALIBUR proposals, focus on making precise measurements using advanced cadmium-zinc-telluride (CZT) detectors, which can effectively detect hard X-rays and gamma-rays.
  • A prototype CZT detector showed impressive performance at room temperature, achieving significant energy resolution in its measurements, and experiments conducted at the DAΦNE collider

Article 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 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 DAΦNE 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.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10490229PMC
http://dx.doi.org/10.3390/s23177328DOI Listing

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