The full phase diagram of (Ga1-xInx)(2)O-3 is obtained theoretically. The phases competing for the ground state are monoclinic beta (low x), hexagonal (x similar to 0.5), and bixbyite (large x). Three disconnected mixing regions interlace with two distinct phase-separation regions, and at x similar to 0.5, the coexistence of hexagonal and beta alloys with phase-separated binary components is expected. We also explore the permanent polarization of the phases, but none of them are polar. On the other hand, we find that epsilon-Ga2O3, which was stabilized in recent experiments, is pyroelectric with a large polarization and piezoelectric coupling, and could be used to produce high-density electron gases at interfaces. (C) 2016 The Japan Society of Applied Physics

Phase diagram and polarization of stable phases of (Ga 1− x In x ) 2 O 3

Maria Barbara Maccioni;
2016-01-01

Abstract

The full phase diagram of (Ga1-xInx)(2)O-3 is obtained theoretically. The phases competing for the ground state are monoclinic beta (low x), hexagonal (x similar to 0.5), and bixbyite (large x). Three disconnected mixing regions interlace with two distinct phase-separation regions, and at x similar to 0.5, the coexistence of hexagonal and beta alloys with phase-separated binary components is expected. We also explore the permanent polarization of the phases, but none of them are polar. On the other hand, we find that epsilon-Ga2O3, which was stabilized in recent experiments, is pyroelectric with a large polarization and piezoelectric coupling, and could be used to produce high-density electron gases at interfaces. (C) 2016 The Japan Society of Applied Physics
2016
Applied Physics/Condensed Matter/Materials Science encompasses the resources of three related disciplines: Applied Physics, Condensed Matter Physics, and Materials Science. The applied physics resources are concerned with the applications of topics in condensed matter as well as optics, vacuum science, lasers, electronics, cryogenics, magnets and magnetism, acoustical physics and mechanics. The condensed matter physics resources are concerned with the study of the structure and the thermal, mechanical, electrical, magnetic and optical properties of condensed matter. They include superconductivity, surfaces, interfaces, thin films, dielectrics, ferroelectrics and semiconductors. The materials science resources are concerned with the physics and chemistry of materials and include ceramics, composites, alloys, metals and metallurgy, nanotechnology, nuclear materials, adhesion and adhesives. Resources dealing with polymeric materials are listed in the Organic Chemistry/Polymer Science category.
Inglese
9
4
041102
2
info:eu-repo/semantics/article
262
Maccioni, Maria Barbara; Fiorentini, Vincenzo
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1481565
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