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Optical Properties of Strained, Disordered InGaAs Based Single Quantum Wells

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Release : 1993
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Book Synopsis Optical Properties of Strained, Disordered InGaAs Based Single Quantum Wells by : Joseph Micallef

Download or read book Optical Properties of Strained, Disordered InGaAs Based Single Quantum Wells written by Joseph Micallef. This book was released on 1993. Available in PDF, EPUB and Kindle. Book excerpt:

Optical Properties of Quantum Wells Composed of All-Binary InAs/GaAs Short-Period Superlattices

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Release : 1992
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Book Synopsis Optical Properties of Quantum Wells Composed of All-Binary InAs/GaAs Short-Period Superlattices by : Martin D. Dawson

Download or read book Optical Properties of Quantum Wells Composed of All-Binary InAs/GaAs Short-Period Superlattices written by Martin D. Dawson. This book was released on 1992. Available in PDF, EPUB and Kindle. Book excerpt: Strained alloy InGaAs/GaAs multiple quantum well structures (MQWs), on GaAs substrates, are being investigated' for use in optical modulators, low-threshold diode lasers, photodetectors and other opto-electronic devices operating near 1 um. Attempts are being made to cover the 0.9-1.1 am spectral range by varying well-widths and/or alloy mole-fraction and by growing such structures on superlattice or alloy buffer layers. Special problems, however, are posed in growing these strained ternary alloy quantum wells with high quality by epitaxial techniques. Alloy concentration is difficult to reproduce, and alloy-disorder introduces an additional line-broadening contribution and non-uniformity into the materials. The critical thickness parameter places an upper limit on the indium mole-fraction (and thereby the strain) for growth directly on GaAs, restricting the flexibility in varying the well width for increased spectral coverage. Typically, this mole-fraction must be less than 0.2, and the lattice-parameter mismatch below 2%, for well-widths -10 nm. Here, we focus on structures in which each quantum well consists of an ordered InAs/GaAs short-period superlattice as an attractive alternative to the random InGaAs alloy structures. These all-binary MQWs are highly-strained (7% lattice parameter mismatch) and can accommodate high average indium mole-fraction (30-40%) in wide wells (10-20 nm) without evidence of strain relaxation due to misfit dislocation formation.

Strained-Layer Quantum Wells and Their Applications

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Release : 1997-12-23
Genre : Science
Kind : eBook
Book Rating : 676/5 ( reviews)

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Book Synopsis Strained-Layer Quantum Wells and Their Applications by : M. O. Manasreh

Download or read book Strained-Layer Quantum Wells and Their Applications written by M. O. Manasreh. This book was released on 1997-12-23. Available in PDF, EPUB and Kindle. Book excerpt: Semiconductor devices based on lattice mismatched heterostructures have been the subject of much study. This volume focuses on the physics, technology and applications of strained layer quantum wells and superlattices, featuring chapters on aspects ranging from theoretical modeling of quantum-well lasers to materials characterization and assessment by the most prominent researchers in the field. It is an essential reference for both researchers and students of semiconductor lasers, sensors and communications.

Modelling of Optical Properties of Strained Quantum Wells Including Free Carrier and Electric Field Effects

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Release : 1996
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Book Synopsis Modelling of Optical Properties of Strained Quantum Wells Including Free Carrier and Electric Field Effects by :

Download or read book Modelling of Optical Properties of Strained Quantum Wells Including Free Carrier and Electric Field Effects written by . This book was released on 1996. Available in PDF, EPUB and Kindle. Book excerpt:

Study of the Optical Properties of Strained-layer InAs(N)quantum Wells

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Release : 2000
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Book Synopsis Study of the Optical Properties of Strained-layer InAs(N)quantum Wells by : 陳冠儒

Download or read book Study of the Optical Properties of Strained-layer InAs(N)quantum Wells written by 陳冠儒. This book was released on 2000. Available in PDF, EPUB and Kindle. Book excerpt:

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