Large area silicon drift detectors system for high precision timed x-ray spectroscopy

Author:

Miliucci MORCID,Iliescu M,Sgaramella FORCID,Bazzi M,Bosnar DORCID,Bragadireanu M,Carminati M,Cargnelli M,Clozza A,Curceanu C,Deda G,De Paolis L,Del Grande RORCID,Fiorini C,Guaraldo C,Iwasaki M,King P,Levi Sandri P,Marton J,Moskal PORCID,Napolitano FORCID,Niedźwiecki S,Piscicchia K,Scordo AORCID,Shi H,Silarski M,Sirghi D,Sirghi F,Skurzok M,Spallone A,Tüchler M,Vazquez Doce O,Zmeskal J

Abstract

Abstract The current work presents the optimization of large area silicon drift detectors developed by the SIDDHARTA-2 collaboration for high precision x-ray measurements of light exotic atom transitions. Two different radiation sources were employed in the study: an x-ray tube, for investigating the energy resolution and the charge collection efficiency of the device in the range 4000 eV–13 000 eV, and a β 90Sr radioactive source for measuring the timing response, thus qualifying the charge drift parameters inside the semiconductor. The study reports the spectroscopic response optimization, together with the tuning of the electron dynamics for the given Silicon technology, by adjusting the applied electric field and the working temperature, which allow a good control of the device’s performances for high precision, timed x-ray spectroscopy applications.

Funder

Croatian Science Foundation

Austrian Science Fund

H2020 Marie Skłodowska-Curie Actions

EU STRONG-2020

Foundational Questions Institute

Polish Ministry of Science and Higher Education

Publisher

IOP Publishing

Subject

Applied Mathematics,Instrumentation,Engineering (miscellaneous)

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