Defects in Silver-Doped Mercuric Iodide Crystals and their Effect on X-Ray and Gamma-Ray Detector Performance

Author:

James R. B.,Bao X. J.,Schlesinger T. E.,Cheng A. Y.,Gerrish V. M.

Abstract

ABSTRACTThe processing steps associated with purification of source material, crystal growth, and attachment of electrical contacts can introduce defects into mercuric iodide (HgI2) that degrade the performance of detectors. We have employed low-temperature photoluminescence (PL) spectroscopy to study radiative recombination centers in the interfacial region between a thin semitransparent film of silver and mercuric iodide. The Ag film was found to introduce a new broad emission band centered at 5490 Å in the photoluminescence spectrum of HgI2. This PL feature can be used as a signature to identify the existence of Ag as a contaminant in HgI2crystals and detectors. Experiments were also conducted on mercuric iodide surfaces that had been doped with silver, and the results showed that Ag is a rapid diffuser in bulk HgI2. Detectors with silver electrodes were also fabricated and tested using an americium-241 gamma-ray source. Large increases in the leakage currents were observed for the Ag-doped HgI2devices, indicated that Ag impurities are electrically active in HgI2. These measurements show that silver is unacceptable as an electrode material for mercuric iodide x-ray and gamma-ray detector applications. In addition, they reveal that caution must be taken during handling of mercuric iodide source material, crystals, and detectors to avoid contact with silver, silver compounds, or with any material that contains silver as a contaminant.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Interfacial Reactivity of Au, Pd, and Pt on BiI3 (001): Implications for Electrode Selection;ACS Applied Materials & Interfaces;2011-05-17

2. Mercuric iodide for room temperature radiation detectors. Synthesis, purification, crystal growth and defect formation;Materials Science and Engineering: R: Reports;1997-02-01

3. Recent advances in γ- and X-ray spectrometry by means of mercuric iodide detectors;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;1996-10

4. State of the art of wide-bandgap semiconductor nuclear radiation detectors;Il Nuovo Cimento A Series 11;1996-09

5. Characterization of silver impurities in mercuric iodide and their relationship to γ-ray-detector performance;Journal of Crystal Growth;1996-09

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