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单晶化学气相沉积金刚石中的致色缺陷及其相关光电跃迁。

Colour-causing defects and their related optoelectronic transitions in single crystal CVD diamond.

机构信息

De Beers UK Ltd, De Beers Research Centre, Belmont Road, Maidenhead, Berkshire SL6 6JW, UK.

出版信息

J Phys Condens Matter. 2013 Jul 10;25(27):275801. doi: 10.1088/0953-8984/25/27/275801. Epub 2013 Jun 17.

Abstract

Defects causing colour in nitrogen-doped chemical vapour-deposited (CVD) diamond can adversely affect the exceptional optical, electronic and spintronic properties of the material. Several techniques were used to study these defects, namely optical absorption spectroscopy, thermoluminescence (TL) and electron paramagnetic resonance (EPR). From our studies, the defects causing colour in nitrogen-doped CVD diamond are clearly not the same as those causing similar colour in natural diamonds. The brown colour arises due to a featureless absorption profile that decreases in intensity with increasing wavelength, and a broad feature at 360 nm (3.49 eV) that scales in intensity with it. Another prominent absorption band, centred at 520 nm (2.39 eV), is ascribed to the neutral nitrogen-vacancy-hydrogen defect. The defects responsible for the brown colour possess acceptor states that are 1.5 eV from the valence band (VB) edge. The brown colour is removed by heat treatment at 1600 ° C, whereupon new defects possessing shallow (<1 eV) trap states are generated.

摘要

氮掺杂化学气相沉积(CVD)金刚石中的色心缺陷会对材料的特殊光学、电子和自旋电子性能产生不利影响。已经使用了多种技术来研究这些缺陷,例如光学吸收光谱、热致发光(TL)和电子顺磁共振(EPR)。通过我们的研究,在氮掺杂 CVD 金刚石中导致颜色的缺陷显然与在天然金刚石中导致类似颜色的缺陷不同。棕色是由于无特征吸收轮廓导致的,其强度随波长的增加而降低,并且在 360nm(3.49eV)处有一个宽的特征,其强度与之相关。另一个突出的吸收带,中心在 520nm(2.39eV),归因于中性氮空位-氢缺陷。导致棕色的缺陷具有离价带(VB)边缘 1.5eV 的受主态。棕色可以通过在 1600°C 进行热处理来消除,随后会产生具有浅(<1eV)陷阱态的新缺陷。

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