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Title: Parameters influencing interfacial morphology in GaAs/Ge superlattices grown by metal organic chemical vapor deposition

Journal Article · · Journal of Crystal Growth

Sponsoring Organization:
USDOE
Grant/Contract Number:
FG02-09ER46577; SC0001299
OSTI ID:
1359317
Journal Information:
Journal of Crystal Growth, Journal Name: Journal of Crystal Growth Vol. 435 Journal Issue: C; ISSN 0022-0248
Publisher:
ElsevierCopyright Statement
Country of Publication:
Netherlands
Language:
English
Citation Metrics:
Cited by: 6 works
Citation information provided by
Web of Science

References (17)

Dynamic study of the surfaces of (001) gallium arsenide in metal-organic vapor-phase epitaxy during arsenic desorption journal February 2000
Growth of highly tensile-strained Ge on relaxed InxGa1−xAs by metal-organic chemical vapor deposition journal October 2008
Kinetics of the reaction between trimethylgallium and arsine journal April 1990
Natural Superstep Formed on GaAs Vicinal Surface by Metalorganic Chemical Vapor Deposition journal March 1990
Electron microscope studies of a Ge–GaAs superlattice grown by molecular beam epitaxy journal August 1983
Thermal properties of AlAs/GaAs superlattices journal November 1987
Molecular beam epitaxy of Ge and Ga1−xAlxAs ultra thin film superlattices journal February 1979
Ge‐GaAs superlattices by molecular beam epitaxy journal June 1981
Thermal conductivity of Si–Ge superlattices journal June 1997
Size and Interface Effects on Thermal Conductivity of Superlattices and Periodic Thin-Film Structures journal May 1997
Thermal Diffusivity Measurement of GaAs/AlGaAs Thin-Film Structures journal May 1994
Growth mode of Ge on GaAs(100)
  • Wang, X. ‐S.; Self, K. W.; Weinberg, W. H.
  • Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, Vol. 12, Issue 4 https://doi.org/10.1116/1.578983
journal July 1994
SixGe1-x alloy as efficient phonon barrier in Ge/Si superlattices for thermoelectric applications journal January 2015
AlGaAs superlattice microcoolers journal July 2003
Simulation and Observation of the Step Bunching Process Grown on GaAs (001) Vicinal Surface by Metalorganic Vapor Phase Epitaxy journal February 1996
Surface‐diffusion and step‐bunching mechanisms of metalorganic vapor‐phase epitaxy studied by high‐vacuum scanning tunneling microscopy journal September 1995
Thermal conductivity and heat transfer in superlattices journal November 1997