JOURNAL ARTICLE

Optical properties of hexagonal boron nitride

Alex ZungerAbraham KatzirA. Halperin

Year: 1976 Journal:   Physical review. B, Solid state Vol: 13 (12)Pages: 5560-5573   Publisher: American Physical Society

Abstract

Optical absorption, reflectivity, and photoconductivity in the near-uv range (1950-3200 \AA{}) of a thin film of hexagonal boron nitride were measured. The main absorption peak was observed at 6.2 eV. A sharp fall at about 5.8 eV was attributed to the direct band gap. The temperature dependence of the band gap was found to be less than 4 \ifmmode\times\else\texttimes\fi{} ${10}^{\ensuremath{-}5}$ eV/\ifmmode^\circ\else\textdegree\fi{}K. Self-consistent tight-binding band-structure calculations were performed on a two-dimensional hexagonal crystal model, using Hamiltonian matrix elements calculated by semiempirical LCAO (linear combination of atomic orbitals) methods. The calculated value for the band gap of hexagonal BN was in reasonably good agreement with the experimental value obtained in the present work, as well as with values reported earlier from electron-energy-loss and photoelectron-emission measurements. The calculations also predicted a very small change in the band gap with temperature, in agreement with the experimental observations.

Keywords:
Hexagonal boron nitride Materials science Band gap Linear combination of atomic orbitals Direct and indirect band gaps Electronic band structure Atomic orbital Hexagonal crystal system Atomic physics Condensed matter physics Electron Molecular physics Optoelectronics Physics Crystallography Nanotechnology Chemistry

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55
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0.95
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Citation History

Topics

Graphene research and applications
Physical Sciences →  Materials Science →  Materials Chemistry
Boron and Carbon Nanomaterials Research
Physical Sciences →  Materials Science →  Materials Chemistry
GaN-based semiconductor devices and materials
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics

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