Resonance Raman scattering studies of composition-modulated GaP/InP short-period superlattices
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.60.4883/fulltext
Reference20 articles.
1. Compositional modulation and long‐range ordering in GaP/InP short‐period superlattices grown by gas source molecular beam epitaxy
2. Formation of lateral quantum wells in vertical short‐period superlattices by strain‐induced lateral‐layer ordering process
3. Experimental evidence for a spontaneously generated effective mass lateral superlattice
4. Spontaneously generated effective-mass lateral superlattices
5. Naturally formed InxAl1−xAs/InyAl1−yAs vertical superlattices
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1. Raman Scattering Study of Lattice Vibrations in the Type-II Superlattice InAs/InAs1−xSbx;Physical Review Applied;2017-09-26
2. Unveiling interfaces between In-rich and Ga-rich GaInP vertical slabs of laterally composition modulated structures;Applied Physics Express;2017-01-16
3. Competition of compressive strain with substrate misorientation in CuPt-type ordered GaInP/AlGaInP quantum wells;Journal of Applied Physics;2011-01
4. Raman scattering studies of (GaP)n/(InP)n(n= 1, 1.7, 2) short-period superlattice structures;Journal of Raman Spectroscopy;2009-09
5. Metamorphosis of InP self-organized islands and the two-dimensional distribution modified by mismatched GaInP buffer layers;Surface Science;2004-08
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