Discretized hexagonal boron nitride quantum emitters and their chemical interconversion

Author:

Kozawa Daichi,Li Sylvia Xin,Ichihara Takeo,Rajan Ananth Govind,Gong XunORCID,He Guangwei,Koman Volodymyr B,Zeng Yuwen,Kuehne Matthias,Silmore Kevin S,Parviz Dorsa,Liu Pingwei,Liu Albert Tianxiang,Faucher Samuel,Yuan Zhe,Warner Jamie,Blankschtein Daniel,Strano Michael SORCID

Abstract

Abstract Quantum emitters in two-dimensional hexagonal boron nitride (hBN) are of significant interest because of their unique photophysical properties, such as single-photon emission at room temperature, and promising applications in quantum computing and communications. The photoemission from hBN defects covers a wide range of emission energies but identifying and modulating the properties of specific emitters remain challenging due to uncontrolled formation of hBN defects. In this study, more than 2000 spectra are collected consisting of single, isolated zero-phonon lines (ZPLs) between 1.59 and 2.25 eV from diverse sample types. Most of ZPLs are organized into seven discretized emission energies. All emitters exhibit a range of lifetimes from 1 to 6 ns, and phonon sidebands offset by the dominant lattice phonon in hBN near 1370 cm−1. Two chemical processing schemes are developed based on water and boric acid etching that generate or preferentially interconvert specific emitters, respectively. The identification and chemical interconversion of these discretized emitters should significantly advance the understanding of solid-state chemistry and photophysics of hBN quantum emission.

Funder

US Office of Naval Research Multi University Research Initiative

JSPS KAKENHI

German Research Foundation (DFG) Research Fellowship

Army Research Office

National Science Foundation

Swiss National Science Foundation

Department of Energy

US Army Research Office MURI

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

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