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Electron Paramagnetic Resonance signature of point defects in neutron irradiated hexagonal Boron Nitride

Materials Science 2018-10-17 v2

Abstract

Hexagonal boron nitride (h-BN) is an attractive van der Waals material for studying fluorescent defects due to its large bandgap. In this work, we demonstrate enhanced pink color due to neutron irradiation and perform electron paramagnetic resonance (EPR) measurements. The new point defects are tentatively assigned to doubly- occupied nitrogen vacancies with (S = 1) and a zero-field splitting (D = 1.2 GHz). These defects are associated with a broad visible optical absorption band and near infrared photoluminescence band centered at ~ 490 nm and 820 nm, respectively. The EPR signal intensities are strongly affected by thermal treatments in temperature range between 600 to 800{\deg}C, where also the irradiation - induced pink color is lost. Our results are important for understanding of point defects in h-BN and their deployment for quantum and integrated photonic applications.

Keywords

Cite

@article{arxiv.1807.05393,
  title  = {Electron Paramagnetic Resonance signature of point defects in neutron irradiated hexagonal Boron Nitride},
  author = {J. R. Toledo and D. B. de Jesus and M. Kianinia and A. S. Leal and C. Fantini and L. A. Cury and G. M. Sáfar and I. Aharonovich and K. Krambrock},
  journal= {arXiv preprint arXiv:1807.05393},
  year   = {2018}
}