Room Temperature Hard Radiation Detectors Based on Solid State Compound Semiconductors: An Overview

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초록

Si and Ge single crystals are the most common semiconductor radiation detectors. However, they need to work at cryogenic temperatures to decrease their noise levels. In contrast, compound semiconductors can be operated at room temperature due to their ability to grow compound materials with tunable densities, band gaps and atomic numbers. Highly efficient room temperature hard radiation detectors can be utilized in biomedical diagnostics, nuclear safety and homeland security applications. In this review, we discuss room temperature compound semiconductors. Since the field of radiation detection is broad and a discussion of all compound materials for radiation sensing is impossible, we discuss the most important materials for the detection of hard radiation with a focus on binary heavy metal semiconductors and ternary and quaternary chalcogenide compounds. [GRAPHICS] .

키워드

Radiation compound semiconductorsX-rayGamma rayDetectorX-RAY-DETECTORSCADMIUM ZINC TELLURIDEBAND-GAP SEMICONDUCTORGAMMA-RAYLEAD IODIDECRYSTAL-GROWTHMERCURIC IODIDESINGLE-CRYSTALSRECENT PROGRESSSENSOR
제목
Room Temperature Hard Radiation Detectors Based on Solid State Compound Semiconductors: An Overview
저자
Mirzaei, AliHuh, Jeung-SooKim, Sang SubKim, Hyoun Woo
DOI
10.1007/s13391-018-0033-2
발행일
2018-05
유형
Review
저널명
Electronic Materials Letters
14
3
페이지
261 ~ 287