Excimer laser based photoluminescence device for diamond identification

Zhen Wang, Tsung-Han Tsai, Wu-Cheng Wang
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Abstract

Surface excitation using deep ultra-violet (DUV) laser light has been applied to diamond which reveals growth structures, as well as photoluminescence originating from crystallographic defects features. This valuable information can aid in distinguishing natural diamonds from their lab-grown counterparts and non-diamond gemstone materials. In this research, we presented a dual photoluminescence imaging and spectroscopy setup using a 193nm argon fluoride (ArF) excimer laser, chosen for its above diamond bandgap (5.5eV) photon energy and high average power. This setup enables the detection of diamond’s characteristic photoluminescence emission features and growth patterns under room temperature conditions. Various types of diamonds, including chemical vapor deposition (CVD) as-grown, CVD grownhigh pressure high temperature (HPHT) treated, HPHT-grown, natural diamond and diamond simulant samples were characterized under this setup.
基于准分子激光的金刚石识别光致发光装置
利用深紫外(DUV)激光对金刚石进行表面激发,揭示了金刚石的生长结构,以及由晶体缺陷特征引起的光致发光。这些有价值的信息有助于将天然钻石与实验室培育的钻石和非钻石宝石材料区分开来。在这项研究中,我们提出了一个双光致发光成像和光谱设置使用193nm氟化氩(ArF)准分子激光器,选择以上金刚石带隙(5.5eV)光子能量和高平均功率。该装置可以在室温条件下检测金刚石的特有光致发光发射特征和生长模式。在该装置下,对化学气相沉积(CVD)生长、CVD生长高压高温(HPHT)处理、HPHT生长、天然金刚石和金刚石模拟样品等不同类型的金刚石进行了表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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