Nitrogen concentration control during diamond growth for NV centre formation

Author:

Teraji T.1ORCID,Shinei C.1ORCID,Masuyama Y.2ORCID,Miyakawa M.3,Taniguchi T.3

Affiliation:

1. Research Center for Electronic and Optical Materials, National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan

2. Quantum Materials and Applications Research Center, National Institutes for Quantum Science and Technology, 1233 Watanuki-machi, Takasaki, Gunma 370-1292, Japan

3. Research Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan

Abstract

Negatively charged nitrogen-vacancy (NV ) centres formed in diamond crystals are point defects that have potential applications in various quantum devices such as highly sensitive magnetic sensors. To improve the sensitivity of magnetic sensors using NV centres, it is essential to precisely control the nitrogen concentration in the crystals. In this paper, we demonstrated that nitrogen concentration in diamond can be controlled with high precision for the following two representative growth methods. One is the high-pressure/high-temperature (HPHT) synthesis method and the other is the chemical vapour deposition (CVD) method. The nitrogen concentration of HPHT-grown diamond decreased semi-logarithmically with increasing contents of titanium or aluminium as nitrogen getter materials. The nitrogen concentration of CVD-grown diamond increased linearly with increasing the flow rate ratio of nitrogen to carbon. NV centres were formed by controlling the total fluence of electron beams so that approximately 20% of the nitrogen became NV centres. The coherence time of electron spin of NV centres obtained by the Hahn-echo pulse sequence T 2 of these diamond crystals was inversely proportional to the nitrogen concentration. A comparison of T 2 of the NV centres for HPHT-synthesized and CVD-grown diamonds showed no significant difference between them. This article is part of the Theo Murphy meeting issue ‘Diamond for quantum applications’.

Funder

Core Research for Evolutional Science and Technology

MEXT Q-LEAP

JST Moonshot

MIC R&D for construction of a global quantum cryptography network

Japan Society for the Promotion of Science, Kakenhi

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A special issue preface: diamond for quantum applications;Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences;2023-12-04

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