InAs/GaAs SK quantum dots stacking: Impact of spacer layer on optical properties (original) (raw)

Optical and structural properties of vertically stacked and electronically coupled quantum dots in InAs/GaAs multilayer structures

Wagner Rodrigues

Nanotechnology, 2007

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Optimizing the spacer layer thickness of vertically stacked InAs/GaAs quantum dots

Bouraoui ILAHI

Materials Science and Engineering: C, 2006

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Thermal annealing effects on photoluminescence properties of vertically stacked InAs/GaAs quantum dots with optimized spacer layer thickness

Bouraoui ILAHI

physica status solidi (c), 2005

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Evidence of lateral coupling in long wavelength vertically stacked InAs/GaAs(001) quantum dots

Bouraoui ILAHI

The European Physical Journal Applied Physics, 2005

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Tuning vertically stacked InAs/GaAs quantum dot properties under spacer thickness effects for 1.3��m emission

Bouraoui ILAHI

Applied Physics A: Materials Science & Processing, 2004

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Wide-wavelength-range control of photoluminescence polarization in closely stacked InAs/GaAs quantum dots

Toshiyuki KAIZU

Journal of Applied Physics, 2019

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Spacer layer thickness effects on the photoluminescence properties of InAs/GaAs quantum dot superlattices

Bouraoui ILAHI

physica status solidi (a), 2003

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Carrier transfer and photoluminescence quenching in InAs/GaAs multilayer quantum dots

E. Grilli

Applied Physics Letters, 2000

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Excited states and energy relaxation in stacked InAs/GaAs quantum dots

Dieter Bimberg

Physical Review B, 1998

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Growth, characterizations, theory and lasing of vertically stacked quantum dots

A. Kosogov

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

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The vertical coupling effect on the electronic states in self-assembled InAs/GaAs quantum dots

M. Fliyou

Solar Energy Materials and Solar Cells, 2006

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Vertical electronic coupling between InAs∕InP quantum-dot layers emitting in the near-infrared range

jacky even

Applied Physics Letters, 2005

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Optical properties of vertically aligned self-assembled InGaAs quantum dot layers on (311)A/B and (100) GaAs substrates

Pedro Pablo González Borrero

Superlattices and Microstructures, 1998

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MBE growth optimization and optical spectroscopy of InAs/GaAs quantum dots emitting at 1.3 μm in single and stacked layers

Philippe Gilet

Journal of Crystal Growth, 2005

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Optical and structural properties of InAs quantum dots in a GaAs matrix for a spectral range up to 1.7 μm

Nikolay Bert

Applied Physics Letters, 1999

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Comparison of single-layer and bilayer InAs/GaAs quantum dots with a higher InAs coverage

Nilanjan Halder

Opto-Electronics Review, 2010

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A detailed investigation on the impact of variation in growth rate, monolayer coverage and barrier thickness on the optical characteristics of InAs/GaAs bilayer quantum dot heterostructures

Aditya Patel

Superlattices and Microstructures, 2013

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High optical property vertically aligned InAs quantum dot structures with GaAsSb overgrown layers

Jen-inn Chyi

Journal of Crystal Growth, 2011

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Study of GaAs spacer layers in InAs/GaAs vertically aligned quantum dot structures

E. Grilli

Thin Solid Films, 2000

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Arsenic pressure and spacer layer thickness effects on the optical properties of stacked InAs/InAlAs quantum dot array

Bassem Salem

physica status solidi (c), 2005

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Dependence of the Electroluminescence on the Spacer Layer Growth Temperature of Multilayer Quantum-Dot Laser Structures

Nurul Fadzlin Hasbullah

IEEE Journal of Quantum Electronics, 2009

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Toward long wavelength low density InAs/GaAs quantum dots

C. Bru-chevalier

Physics Letters A

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Stacking of multilayer InAs quantum dots with combination capping of InAlGaAs and high temperature grown GaAs

Suseendran Jayachandran

Superlattices and Microstructures, 2009

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Investigation of the effect of larger monolayer coverage in the active layer of bilayer InAs/GaAs quantum-dot structure and effects of post-growth annealing

Nilanjan Halder

Applied Physics A, 2011

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Spectroscopy of sub-wetting layer states in InAs/GaAs quantum dot bi-layer systems

georgiy tarasov

Semiconductor Science and Technology, 2007

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