Raman and ODMR Spectroscopy of NV Centers in Nanolayers and Nanopillars of $$\mathbf{{\langle 111\rangle}}$$ Diamond after Etching with a Focused Beam of Ga Ions

IF 0.5 Q4 PHYSICS, MULTIDISCIPLINARY Optoelectronics Instrumentation and Data Processing Pub Date : 2024-03-26 DOI:10.3103/s8756699023060067
I. A. Kartashov, S. N. Podlesnyi, V. A. Antonov, V. P. Popov, Yu. N. Pal’yanov
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Abstract

The spectral characteristics of the optically detected magnetic resonance of negatively charged nitrogen–vacancy (NV\({}^{-}\)) centers in synthetic diamonds and nanopillars on their surface formed by a focused Ga\({}^{+}\) ion beam, when the lower spin sublevels are populated with microwave radiation, are studied. In the course of studies for emerging spin resonances at different values of the external magnetic field, both a significant decrease in the gyromagnetic ratio and a significant drop in the photoluminescence contrast are revealed for the directions of the NV\({}^{-}\) centers inclined to the axis of the nanopillars due to residual defects from ion etching recorded on Raman spectra in the form of peaks from amorphous carbon and graphite and the stresses they create.

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用聚焦镓离子束蚀刻 $$\mathbf{{\langle 111\rangle}}$ 金刚石纳米层和纳米柱中 NV 中心的拉曼光谱和 ODMR 光谱
摘要 研究了合成金刚石及其表面由聚焦 Ga\({}^{+}\) 离子束形成的纳米柱中的带负电的氮空位(NV\ ({}^{-}\))中心的光学检测磁共振的光谱特性,当时低级自旋亚级被微波辐射填充。在研究不同外磁场值下新出现的自旋共振的过程中,发现 NV\({}^{-}\) 中心的方向与纳米柱的轴线倾斜时,回旋磁比会显著下降,光致发光对比度也会显著下降,这是由于离子刻蚀产生的残余缺陷以无定形碳和石墨的峰值及其产生的应力的形式记录在拉曼光谱上。
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来源期刊
CiteScore
1.00
自引率
50.00%
发文量
16
期刊介绍: The scope of Optoelectronics, Instrumentation and Data Processing encompasses, but is not restricted to, the following areas: analysis and synthesis of signals and images; artificial intelligence methods; automated measurement systems; physicotechnical foundations of micro- and optoelectronics; optical information technologies; systems and components; modelling in physicotechnical research; laser physics applications; computer networks and data transmission systems. The journal publishes original papers, reviews, and short communications in order to provide the widest possible coverage of latest research and development in its chosen field.
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