Spatially-resolved UV-C emission in epitaxial monolayer boron nitride

Author:

Rousseau A,Plo J,Valvin P,Cheng T S,Bradford JORCID,James T S SORCID,Wrigley J,Mellor C JORCID,Beton P HORCID,Novikov S VORCID,Jacques V,Gil BORCID,Cassabois GORCID

Abstract

Abstract We report hyperspectral imaging in the UV-C spectral domain in epitaxial monolayers of hexagonal boron nitride (hBN). Under quasi-resonant laser excitation, the UV-C emission of monolayer hBN consists in resonant Raman scattering and photoluminescence, which appear to be spatially uncorrelated. Systematic measurements as a function of the excitation energy bring evidence of a photoluminescence singlet at 6.045 eV. The spatial variations of the photoluminescence energy are found to be around 10 meV, revealing that the inhomogeneous broadening is lower than the average photoluminescence linewidth of 25 meV, a value close to the radiative limit in monolayer hBN. Our methodology provides an accurate framework for assessing the opto-electronic properties of hBN in the prospect of scalable hBN-based devices fabricated by epitaxy.

Funder

Engineering and Physical Sciences Research Council

Agence Nationale de la Recherche

Publisher

IOP Publishing

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