Miscibility gaps and spinodal decomposition in III/V quaternary alloys of the type AxByC1−x−yD

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Publication Type Journal Article
School or College College of Engineering
Department Electrical & Computer Engineering; Materials Science & Engineering
Creator Stringfellow, Gerald B.
Title Miscibility gaps and spinodal decomposition in III/V quaternary alloys of the type AxByC1−x−yD
Date 1983-01
Description Thermodynamic concepts have been developed for the calculation of solid-phase miscibility gaps and spinodal decomposition in quaternary alloys of the type AxByC1−x−yD. These concepts have been applied to the analysis of III/V quaternary alloys using the delta-lattice-parameter (DLP) solution model. In addition, the effects of coherency strain energy have been included in the calculation. Results are presented for the systems AlxGayIn1−x−yP, AlxGayIn1−x−yAs, InPxAsySb1−x−y, and GaPxAsySb1−x−y. Even though these systems all have miscibility gaps, they are shown to be stable against spinodal decomposition at all temperatures due to the elastic strain energy inherent in coherent decomposition of single crystalline alloys. Journal of Applied Physics is copyrighted by The American Institute of Physics.
Type Text
Publisher American Institute of Physics (AIP)
Volume 54
Issue 1
First Page 404
Last Page 409
Subject Thermodynamics; Quartenary alloys; Coherent decomposition
Subject LCSH Lattice dynamics; Decomposition (Chemistry); Alloys
Language eng
Bibliographic Citation Stringfellow, G. B. (1983). Miscibility gaps and spinodal decomposition in III/V quaternary alloys of the type AxByC1−x−yD. Journal of Applied Physics, 54(1), 404-9.
Rights Management (c)American Institute of Physics. The following article appeared in Stringfellow, G. B., Journal of Applied Physics. 54(1), 1983
Format Medium application/pdf
Format Extent 331,595 bytes
Identifier ir-main,1893
ARK ark:/87278/s6nc6jbk
Setname ir_uspace
ID 703073
Reference URL https://collections.lib.utah.edu/ark:/87278/s6nc6jbk
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