An extensive study on simple and GRIN SCH-based In0.71Ga0.21Al0.08As/InP lasing heterostructures
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Mathematical Physics,Atomic and Molecular Physics, and Optics
Reference18 articles.
1. Modeling and simulation of GaN/Al0.3Ga0.7N new multilayer nano-heterostructure
2. Affects of Al concentration on GaN/AlxGa1−xN new modeled multilayer nano-heterostructure
3. Ultimate low-loss single-mode fibre at 1.55 μm
4. Quantum-well heterostructure lasers
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1. An Advanced Study on Temperature Affected Electro-optic Properties of In0.73Al0.07Ga0.20As/InP in Fiber-optic Communications under Bi-modes;Intelligent Technologies for Scientific Research and Engineering;2023-07-06
2. Uni-directional (001) pressure effect on optical gain spectra of InAs/GaAsSb quantum well heterostructure;Journal of Physics: Conference Series;2023-02-01
3. Theoretical studies of optoelectronic properties of AlP1xBix ternaries: Promising light sources for fiber optic communications;Radiation Physics and Chemistry;2023-01
4. A Simulative Study on Electro-Optic Characteristics of InAlGaAs/InP for Fiber Optic-based Communications under Nanoscale Well Thickness Layers;Photonic Materials: Recent Advances and Emerging Applications;2023-01
5. Tunable Optical Gain Characteristics of AlN/GaN/InAlN Quantum Well Heterostructure under Uniaxial and Biaxial Pressures;physica status solidi (b);2022-12-07
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