Color Centers in Hexagonal Boron Nitride

Author:

Kim Suk Hyun12,Park Kyeong Ho1,Lee Young Gie1,Kang Seong Jun3ORCID,Park Yongsup12,Kim Young Duck12ORCID

Affiliation:

1. Department of Physics, Kyung Hee University, Seoul 02447, Republic of Korea

2. Department of Information Display, Kyung Hee University, Seoul 02447, Republic of Korea

3. Department of Advanced Materials Engineering for Information and Electronics, Kyung Hee University, Yongin 17101, Republic of Korea

Abstract

Atomically thin two-dimensional (2D) hexagonal boron nitride (hBN) has emerged as an essential material for the encapsulation layer in van der Waals heterostructures and efficient deep ultraviolet optoelectronics. This is primarily due to its remarkable physical properties and ultrawide bandgap (close to 6 eV, and even larger in some cases) properties. Color centers in hBN refer to intrinsic vacancies and extrinsic impurities within the 2D crystal lattice, which result in distinct optical properties in the ultraviolet (UV) to near-infrared (IR) range. Furthermore, each color center in hBN exhibits a unique emission spectrum and possesses various spin properties. These characteristics open up possibilities for the development of next-generation optoelectronics and quantum information applications, including room-temperature single-photon sources and quantum sensors. Here, we provide a comprehensive overview of the atomic configuration, optical and quantum properties, and different techniques employed for the formation of color centers in hBN. A deep understanding of color centers in hBN allows for advances in the development of next-generation UV optoelectronic applications, solid-state quantum technologies, and nanophotonics by harnessing the exceptional capabilities offered by hBN color centers.

Funder

Kyung Hee University

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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