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Technical Paper

Fabrication and Evaluation of Spectroscopic Grade Quasi-hemispherical CdZnTe Detector

원문정보

Beomjun Park, Kyungeun Jung, Changsoo Kim

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초록

영어

Background: This study focuses on the fabrication and characterization of quasi-hemispherical Cd0.9Zn0.1Te (CZT) detector for gamma-ray spectroscopy applications, aiming to contribute to advancements in radiation measurement and research. Materials and Methods: A CZT ingot was grown using the vertical Bridgman technique, followed by proper fabrication processes including wafering, polishing, chemical etching, electrode deposition, and passivation. Response properties were evaluated under various external bias voltages using gamma-ray sources such as Co-57, Ba-133, and Cs-137. Results and Discussion: The fabricated quasi-hemispherical CZT detector demonstrated sufficient response properties across a wide range of gamma-ray energies, with sufficient energy resolution and peak distinguishability. Higher external bias voltages led to improved performance in terms of energy resolution and peak shape. However, further improvements in defect properties are necessary to enhance detector performance under low bias conditions. Conclusion: This study underscores the efficacy of quasi-hemispherical CZT detector for gamma- ray spectroscopy, providing valuable insights for enhancing their capabilities in radiation research field.

목차

ABSTRACT
Introduction
Materials and Methods
Results and Discussion
Conclusion
Supplementary Materials
Conflict of Interest
Acknowledgements
Ethical Statement
Author Contribution
References

저자정보

  • Beomjun Park Department of Materials Science and Engineering, Korea University, Seoul, Korea; The Institute for High Technology Materials and Devices, Korea University, Seoul, Korea; Advanced Crystal Material/Device Research Center, Konkuk University, Seoul, Korea
  • Kyungeun Jung Agency for Defense Development (ADD), Daejeon, Korea
  • Changsoo Kim Department of Radiological Science, College of Health Sciences, Catholic University of Pusan, Busan, Korea

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