Self-organized InP islands on (100) GaAs by metalorganic vapor phase epitaxy (original) (raw)

Selective growth of InGaAs on nanoscale InP islands

Harri Lipsanen

Applied Physics Letters, 1994

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In-situ grown dots of InP on GaAs and GaInP-a comparison

D. Hessman

Proceedings of 8th International Conference on Indium Phosphide and Related Materials, 1996

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Optical properties of self-assembled InAs quantum islands grown on InP(001) vicinal substrates

gerard GUILLOT

Applied Physics Letters, 2001

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Site-controlled growth of InP/GaInP quantum dots on GaAs substrates

Sven Hofling

Nanotechnology, 2012

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Modified self-assembly of InAs islands acting as stressors for strain-induced InGaAs(P)/InP quantum dots

Harri Lipsanen

Nanotechnology, 2005

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Strong carrier confinement and evidence for excited states in self-assembled InAs quantum islands grown on InP(001)

Bassem Salem

Physical Review B, 2002

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Self-assembled quantum dots of InSb grown on InP by atomic layer molecular beam epitaxy: Morphology and strain relaxation

Francesca Peiró

Applied Physics Letters, 1996

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Growth and characterizations of InP self-assembled quantum dots embedded in InAIP grown on GaAs substrates

Jae-Hyun Ryou

Journal of Electronic Materials, 2001

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Self-assembling InAs and InP quantum dots for optoelectronic devices

Werner Winter

Thin Solid Films, 2000

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Self-assembled InAs island formation on GaAs (110) by metalorganic vapor phase epitaxy

J. Sormunen, Harri Lipsanen

Applied Surface Science, 2008

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InAs/GaAs self-organized quantum dots on (411)A GaAs by molecular beam epitaxy

S. Sopitpan, Somsak Panyakeow

Journal of Crystal Growth, 2001

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Self-forming InAs/GaP quantum dots by direct island growth

Z. Liliental-weber

Applied Physics Letters, 1998

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Strong carrier confinement in self-assembled InAs/InP[001] elongated quantum islands emitting at 1.5 μm

Bassem Salem

Conference Proceedings. 14th Indium Phosphide and Related Materials Conference (Cat. No.02CH37307), 2002

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Density and size control of InP/GaInP quantum dots on GaAs substrate grown by gas source molecular beam epitaxy

Sven Hofling

Nanotechnology, 2012

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Optical and structural properties of metalorganic-vapor-phase-epitaxy-grown InAs quantum wells and quantum dots in InP

Chương Trần

Physical Review B, 1993

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Contribution of long lived metastable states to the PL of InP dots in indirect band-gap barrier layers

Pierre Lefebvre

The European Physical Journal Applied Physics, 2007

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Optimization of MOVPE-grown InxGa1−xP self-assembled quantum dots on GaP

Arnab Bhattacharya

Journal of Crystal Growth, 2002

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Fabrication of GaInAs quantum disks using self-organized InP islands as a mask in wet chemical etching

Harri Lipsanen

Applied Physics Letters, 1996

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Optical anisotropy and photoluminescence temperature dependence for self-assembled InAs quantum islands grown on vicinal (001) InP substrates

gerard GUILLOT

Microelectronics Journal, 2002

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Size and strain effects in the E[sub 1]-like optical transitions of InAs/InP self-assembled quantum dot structures

Robert Carles

Applied Physics Letters, 1999

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Structural and optical characterization of self-assembled InAs-GaAs quantum dots grown on high index surfaces

E. Grilli

1997

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Tensile-strained GaAsN quantum dots on InP

Harri Lipsanen

Applied Physics Letters, 2007

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Surface morphology and lateral distribution of self-assembled in0. 5Ga0. 5AS nanostructures grown on gaAs (100) substrate

Khamim Ismail

2008

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InAs quantum dot growth on planar InP (1 0 0) by metalorganic vapor-phase epitaxy with a thin GaAs interlayer

Richard Noetzel

Journal of Crystal Growth, 2011

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Critical barrier thickness for the formation of InGaAs/GaAs quantum dots

David Gonzalez

Materials Science and Engineering: C, 2005

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Uniform Formation of Two-dimensional and Three-dimensional InAs Islands on GaAs by Molecular Beam Epitaxy

Toshiyuki KAIZU

Japanese Journal of Applied Physics, 2003

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Mechanisms of InAs/GaAs quantum dot formation during annealing of In islands

Simon Huang

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Structural and optical properties of InP quantum dots grown on GaAs(001)

Rogerio Paniago

Journal of Applied Physics, 2007

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