Characterization of chromium impurities in <i>β</i>-Ga2O3
Abstract
Chromium is a common transition-metal impurity that is easily incorporated during crystal growth. It is perhaps best known for giving rise to the 694.3 nm (1.786 eV) emission in Cr-doped Al2O3, exploited in ruby lasers. Chromium has also been found in monoclinic gallium oxide, a wide-bandgap semiconductor being pursued for power electronics. In this work, we thoroughly characterize the behavior of Cr in Ga2O3 through theoretical and experimental techniques. β-Ga2O3 samples are grown with the floating zone method and show evidence of a sharp photoluminescence signal, reminiscent of ruby. We calculate the energetics of formation of Cr from first principles, demonstrating that Cr preferentially incorporates as a neutral impurity on the octahedral site. Cr possesses a quartet ground-state spin and has an internal transition with a zero-phonon line near 1.8 eV. By comparing the calculated and experimentally measured luminescence lineshape function, we elucidate the role of coupling to phonons and uncover features beyond the Franck–Condon approximation. The combination of strong emission with a small Huang–Rhys factor of 0.05 and a technologically relevant host material renders Cr in Ga2O3 attractive as a quantum defect.
Article Details
Journal Info
Journal of Applied Physics
American Institute of Physics
Authors (11)
Mark E. Turiansky
Department of Materials
Sai Mu
Department of Physics and Astronomy
Lukas Razinkovas
Center for Physical Sciences and Technology (FTMC) 3 , Vilnius LT–10257,
Kamyar Parto
Department of Electrical and Computer Engineering, University of California, Santa Barbara 5 , Santa Barbara, California 93106-5080,
Sahil D. Patel
Department of Electrical and Computer Engineering, University of California, Santa Barbara 5 , Santa Barbara, California 93106-5080,
Sean Doan
Department of Physics, University of California, Santa Barbara 6 , Santa Barbara, California 93106-9530,
Ganesh Pokharel
Steven J. Gomez Alvarado
Stephen D. Wilson
Galan Moody
Department of Electrical and Computer Engineering, University of California, Santa Barbara 5 , Santa Barbara, California 93106-5080,
Chris G. Van de Walle
Materials Department, University of California Santa Barbara , Santa Barbara, California 93106,