Selected Papers on Quantum Well Intermixing for Photonics

Selected Papers on Quantum Well Intermixing for Photonics
Author: E. Herbert Li
Publisher: SPIE-International Society for Optical Engineering
Total Pages: 634
Release: 1998
Genre: Photography
ISBN:


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SPIE Milestones are collections of seminal papers from the world literature covering important discoveries and developments in optics and photonics.

Quantum Wells, Wires and Dots

Quantum Wells, Wires and Dots
Author: Paul Harrison
Publisher: John Wiley & Sons
Total Pages: 564
Release: 2011-09-26
Genre: Science
ISBN: 111996475X


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Quantum Wells, Wires and Dots, 3rd Edition is aimed at providing all the essential information, both theoretical and computational, in order that the reader can, starting from essentially nothing, understand how the electronic, optical and transport properties of semiconductor heterostructures are calculated. Completely revised and updated, this text is designed to lead the reader through a series of simple theoretical and computational implementations, and slowly build from solid foundations, to a level where the reader can begin to initiate theoretical investigations or explanations of their own.

Selected Papers on Sol-gel for Photonics

Selected Papers on Sol-gel for Photonics
Author: S. Iraj Najafi
Publisher: SPIE-International Society for Optical Engineering
Total Pages: 548
Release: 1998
Genre: Science
ISBN:


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SPIE Milestones are collections of seminal papers from the world literature covering important discoveries and developments in optics and photonics.

Semiconductor Quantum Well Intermixing

Semiconductor Quantum Well Intermixing
Author: J. T. Lie
Publisher: CRC Press
Total Pages: 712
Release: 2000-01-18
Genre: Science
ISBN: 1482283344


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Semiconductor Quantum Well Intermixing is an international collection of research results dealing with several aspects of the diffused quantum well (DFQW), ranging from Physics to materials and device applications. The material covered is the basic interdiffusion mechanisms of both cation and anion groups as well as the properties of band structure

Selected Papers on Photoelasticity

Selected Papers on Photoelasticity
Author: Terry Yuan-Fang Chen
Publisher:
Total Pages: 620
Release: 1999
Genre: Photoelasticity
ISBN:


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Selected Papers on Optical Pattern Recognition

Selected Papers on Optical Pattern Recognition
Author: Francis T. S. Yu
Publisher: SPIE-International Society for Optical Engineering
Total Pages: 668
Release: 1999
Genre: Computers
ISBN:


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SPIE Milestones are collections of seminal papers from the world literature covering important discoveries and developments in optics and photonics.

Quantum Well Intermixing For Photonic Integrated Circuits

Quantum Well Intermixing For Photonic Integrated Circuits
Author: Xiaolan Sun
Publisher:
Total Pages: 220
Release: 2007
Genre:
ISBN:


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In this thesis, several aspects of GaAsSb/AlSb multiple quantum well (MQW) heterostructures have been studied. First, it was shown that the GaAsSb MQWs with a direct band gap near 1.5μm at room temperature could be monolithically integrated with AlGaSb/AlSb or AlGaAsSb/AlAsSb Bragg mirrors, which can be applied to Vertical Cavity Surface Emitting Lasers (VCSELs). Secondly, an enhanced photoluminescence from GaAsSb MQWs was reported. The photoluminescence strength increased dramatically with arsenic fraction as conjectured. The peak photoluminescence from GaAs0.31Sb0.69 was 208 times larger than that from GaSb. Thirdly, the strong photoluminescence from GaAsSb MQWs and the direct nature of the band gap near 1.5μm at room temperature make the material favorable for intermixing studies. The samples were treated with ion implantation followed by rapid thermal annealing (RTA). A band gap blueshift as large as 198 nm was achieved with a modest ion dose and moderate annealing temperature. Photoluminescence strength for implanted samples generally increased with the annealing temperature. The energy blueshift was attributed to the interdiffusion of both the group III and group V sublattices. Finally, based on the interesting properties of GaAsSb MQWs, including the direct band gap near 1.5μm, strong photoluminescence, a wide range of wavelength (1300 - 1500 nm) due to ion implantation-induced quantum well intermixing (QWI), and subpicosecond spin relaxation reported by Hall et al, we proposed to explore the possibilities for ultra-fast optical switching by investigating spin dynamics in semiconductor optical amplifiers (SOAs) containing InGaAs and GaSb MQWs. For circularly polarized pump and probe waves, the numerical simulation on the modal indices showed that the difference between the effective refractive index of the TE and TM modes was quite large, on the order of 0.03, resulting in a significant phase mismatch in a traveling length larger than 28μm. Thus the FWM conversion efficiency was exceedingly small and the FWM mechanism in SOAs used for investigation of all-optical polarization switching was strongly limited.