High conductivity and low activation energy in p-type AlGaN

Author:

Rathkanthiwar Shashwat1ORCID,Bagheri Pegah1ORCID,Khachariya Dolar2ORCID,Mita Seiji2,Quiñones-García Cristyan1ORCID,Guan Yan1,Moody Baxter2,Reddy Pramod2,Kirste Ronny2ORCID,Collazo Ramón1ORCID,Sitar Zlatko12ORCID

Affiliation:

1. Department of Materials Science and Engineering, North Carolina State University 1 , Raleigh, North Carolina 27695-7919, USA

2. Adroit Materials, Inc. 2 , 2054 Kildaire Farm Rd., Cary, North Carolina 27518, USA

Abstract

Record-low p-type resistivities of 9.7 and 37 Ω cm were achieved in Al0.7Ga0.3N and Al0.8Ga0.2N films, respectively, grown on single-crystal AlN substrate by metalorganic chemical vapor deposition. A two-band conduction model was introduced to explain the anomalous thermal behavior of resistivity and the Hall coefficient. Relatively heavy Mg doping (5 × 1019 cm−3), in conjunction with compensation control, enabled the formation of an impurity band exhibiting a shallow activation energy of ∼30 meV for a wide temperature range. Valence band conduction associated with a large Mg ionization energy was dominant above 500 K. The apparently anomalous results deviating from the classical semiconductor physics were attributed to fundamentally different Hall scattering factors for impurity and valence band conduction. This work demonstrates the utility of impurity band conduction to achieve technologically relevant p-type conductivity in Al-rich AlGaN.

Funder

Air Force Office of Scientific Research

National Science Foundation

Army Research Office

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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