2013Unpublished venueRequires access

Position and density control of nitrogen-vacancy centers in diamond using micropatterned substrate for chemical vapor deposition

Tomohiro Gomi, Syuhei Tomizawa, Kohei Ohashi, Kohei M. Itoh, Junko Ishi‐Hayase, Hideyuki Watanabe, Hitoshi Umezawa, Shinichi Shikata

Open publisher page 1 citations

Abstract

We demonstrate a promising technique to control the position and density of nitrogen-vacancy (NV) centers in diamond thin film grown on a diamond substrate using nitrogen-doped isotopically-purified chemical vapor deposition (CVD). We succeed in control of the lateral position and density of NV centers doped in diamond thin film utilizing a micropatterned diamond substrate for nitrogen-doped isotopically-purified CVD diamond growth.

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What this paper is about

We demonstrate a promising technique to control the position and density of nitrogen-vacancy (NV) centers in diamond thin film grown on a diamond substrate using nitrogen-doped isotopically-purified chemical vapor deposition (CVD). We succeed in control of the lateral position and density of NV centers doped in diamond thin film utilizing a micropatterned diamond substrate for nitrogen-doped isotopically-purified CVD diamond growth.

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Available abstract

We demonstrate a promising technique to control the position and density of nitrogen-vacancy (NV) centers in diamond thin film grown on a diamond substrate using nitrogen-doped isotopically-purified chemical vapor deposition (CVD). We succeed in control of the lateral position and density of NV centers doped in diamond thin film utilizing a micropatterned diamond substrate for nitrogen-doped isotopically-purified CVD diamond growth.

Key concepts: Diamond, Chemical vapor deposition, Materials science, Substrate (aquarium), Nitrogen, Vacancy defect, Doping, Nanotechnology

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