2013Acta Physica SinicaOpen access

Photoluminescence studies of the neutral vacancy defect known as GR1 centre in diamond

Kaiyue Wang, Zhihong Li, Tian Yuming, Zhu Yu-Mei, Zhao Yuan-Yuan, Chai Yue-Sheng

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Abstract

The single isolate vacancy in diamond exists in three charged states, neutral, negative and positive; and many complicated defects such as di-vacancies, impurities-vacancy complexes could also be formed in diamond. In this paper, we investigate the optical properties of the irradiation-induced neutral vacancy in diamond by low-temperature micro-photoluminescence technology, which will play a guiding significant role in the further studies of the complex defects in diamond.

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What this paper is about

The single isolate vacancy in diamond exists in three charged states, neutral, negative and positive; and many complicated defects such as di-vacancies, impurities-vacancy complexes could also be formed in diamond. In this paper, we investigate the optical properties of the irradiation-induced neutral vacancy in diamond by low-temperature micro-photoluminescence technology, which will play a guiding significant role in the further studies of the complex defects in diamond.

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Available abstract

The single isolate vacancy in diamond exists in three charged states, neutral, negative and positive; and many complicated defects such as di-vacancies, impurities-vacancy complexes could also be formed in diamond. In this paper, we investigate the optical properties of the irradiation-induced neutral vacancy in diamond by low-temperature micro-photoluminescence technology, which will play a guiding significant role in the further studies of the complex defects in diamond.

Key concepts: Diamond, Vacancy defect, Photoluminescence, Materials science, Impurity, Irradiation, Optoelectronics, Condensed matter physics

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