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Formation of Multilayered Nanostructures of N V Sites in Single-Crystal CVD Diamond
Technical Physics Letters ( IF 0.8 ) Pub Date : 2020-09-01 , DOI: 10.1134/s1063785020070093
A. M. Gorbachev , M. A. Lobaev , D. B. Radishchev , A. L. Vikharev , S. A. Bogdanov , S. V. Bol’shedvorskii , A. I. Zeleneev , V. V. Soshenko , A. V. Akimov , M. N. Drozdov , V. A. Isaev

Abstract

The results of growing multilayered nitrogen-doped nanostructures that have the form of periodically arranged nanometer-thick nitrogen-containing layers in a single-crystal CVD diamond are presented. The possibility of creating nitrogen-doped diamond layers with extremely sharp boundaries (less than 1 nm) is demonstrated. The photoluminescence study have shown that multilayered structures make it possible to obtain a higher radiation intensity of practically important NV sites at a spin coherence time close to that for uniformly doped layers with the same concentration of nitrogen.


中文翻译:

单晶CVD金刚石中NV位点的多层纳米结构的形成

摘要

提出了在单晶CVD金刚石中生长多层氮掺杂纳米结构的结果,该结构具有周期性排列的纳米厚的含氮层。演示了创建边界极窄(小于1 nm)的掺氮金刚石层的可能性。所述光致发光的研究已经表明,多层结构使它能够获得实际上重要的N个较高的辐射强度V -在一个自旋相干时间接近用于均匀掺杂层与氮的相同浓度的网站。
更新日期:2020-09-01
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