Melt-grown semi-insulating Mn:β-Ga2O3 single crystals exhibiting unique visible absorptions and luminescence

Author:

Dutton Benjamin L.12ORCID,Varley Joel B.3ORCID,Remple Cassandra24ORCID,Jesenovec Jani12ORCID,Downing Brooke K.1ORCID,Shen Jimmy-Xuan3,Ghandiparsi Soroush3,Neal Adam T.5ORCID,Kim Yunjo5ORCID,Green Andrew J.6,Voss Lars F.3,McCluskey Matthew D.24ORCID,McCloy John S.12ORCID

Affiliation:

1. Institute of Materials Research, Washington State University 1 , Pullman, Washington 99164-2711

2. School of Mechanical and Materials Engineering, Washington State University 2 , Pullman, Washington 99164

3. Lawrence Livermore National Laboratory 3 , Livermore, California 94551-0808

4. Department of Physics and Astronomy, Washington State University 4 , Pullman, Washington 99164-2814

5. Air Force Research Laboratory, Materials and Manufacturing Directorate 5 , 2450 Hobson Way, Wright-Patterson AFB, Ohio 45433

6. Air Force Research Laboratory, Sensors Directorate 6 , 2241 Avionics Circle, Wright-Patterson AFB, Ohio 45433

Abstract

Several acceptor dopants have been explored in β-Ga2O3 to produce semi-insulating substrates and epitaxial films. Fe and Mg make up the majority of research thus far; however, other transition metals provide potential alternatives for optimized performance. β-Ga2O3 bulk single crystals were grown by the Czochralski and vertical gradient freeze methods with a nominal dopant concentration of 0.25 at. % Mn. Ultraviolet-visible-near infrared spectroscopy and photoluminescence revealed polarization- and orientation-dependent optical absorptions (pleochroism) coupled with an orange luminescence. All samples were electrically insulating, on the order of 109–1011 ohm cm at room temperature, indicative of acceptor doping. Actual dopant concentrations of the intentionally doped transition metal and background impurities were determined via glow discharge mass spectrometry, indicating the macroscale segregation behavior. High-temperature resistivity measurements indicated an experimental acceptor level of 1.7 ± 0.2 eV. Hydrogenation of samples resulted in an increase in the orange luminescence and O–H stretching modes observable in the infrared spectrum. Density functional theory calculations were performed to determine the likely site-occupancy and acceptor level of Mn in the bandgap.

Funder

Air Force Office of Scientific Research

Lawrence Livermore National Laboratory

Publisher

American Vacuum Society

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics

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