Determination of the optical band-gap energy of cubic and hexagonal boron nitride using luminescence excitation spectroscopy

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Abstract

Using synchrotron-based luminescence excitation spectroscopy in the energy range 4-20eV at 8K, the indirect Γ-X optical band-gap transition in cubic boron nitride is determined as 6.36 0.03eV, and the quasi-direct band-gap energy of hexagonal boron nitride is determined as 5.96 0.04eV. The composition and structure of the materials are self-consistently established by optically detected x-ray absorption spectroscopy, and both x-ray diffraction and Raman measurements on the same samples give independent confirmation of their chemical and structural purity: together, the results are therefore considered as providing definitive measurements of the optical band-gap energies of the two materials. © IOP Publishing Ltd.

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Evans, D. A., McGlynn, A. G., Towlson, B. M., Gunn, M., Jones, D., Jenkins, T. E., … Poolton, N. R. J. (2008). Determination of the optical band-gap energy of cubic and hexagonal boron nitride using luminescence excitation spectroscopy. Journal of Physics Condensed Matter, 20(7). https://doi.org/10.1088/0953-8984/20/7/075233

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