Timepix3: Compensation of Thermal Distortion of Energy Measurement

Author:

Urban Martin1ORCID,Nentvich Ondrej1ORCID,Marek Lukas23,Hladik David1,Hudec Rene1ORCID,Sieger Ladislav1ORCID

Affiliation:

1. Faculty of Electrical Engineering, Czech Technical University in Prague, Technicka 2, 166 27 Prague 6, Czech Republic

2. Faculty of Mathematics and Physics, Charles University, V Holesovickach 2, 180 00 Prague 8, Czech Republic

3. Advacam, s.r.o., U Pergamenky 1145/12, 170 00 Prague 7, Czech Republic

Abstract

The Timepix3 is a hybrid pixellated radiation detector consisting of a 256 px × 256 px radiation-sensitive matrix. Research has shown that it is susceptible to energy spectrum distortion due to temperature variations. This can lead to a relative measurement error of up to 35% in the tested temperature range of 10 °C to 70 °C. To overcome this issue, this study proposes a complex compensation method to reduce the error to less than 1%. The compensation method was tested with different radiation sources, focusing on energy peaks up to 100 keV. The results of the study showed that a general model for temperature distortion compensation could be established, where the error in the X-ray fluorescence spectrum of Lead (74.97 keV) was reduced from 22% to less than 2% for 60 °C after the correction was applied. The validity of the model was also verified at temperatures below 0 °C, where the relative measurement error for the Tin peak (25.27 keV) was reduced from 11.4% to 2.1% at −40 °C. The results of this study demonstrate the effectiveness of the proposed compensation method and models in significantly improving the accuracy of energy measurements. This has implications for various fields of research and industry that require accurate radiation energy measurements and cannot afford to use power for cooling or temperature stabilisation of the detector.

Funder

Ministry of Education, Youth and Sports

Czech Technical University in Prague

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference33 articles.

1. Overview of current applications of the Timepix detector in spectroscopy, radiation and medical physics;Marcu;Appl. Spectrosc. Rev.,2020

2. Feasibility study of a TIMEPIX detector for mammography applications;Romero;Proceedings of the 13th International Conference on Medical Information Processing and Analysis,2017

3. X-ray and gamma imaging with Medipix and Timepix detectors in medical research;Procz;Radiat. Meas.,2019

4. Analysis of painted arts by energy sensitive radiographic techniques with the Pixel Detector Timepix;Zemlicka;J. Instrum.,2011

5. Dosimetry in mixed neutron-gamma fields with a Timepix detector;Ekendahl;Radiat. Meas.,2018

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