Epitaxial growth of 1.55μm emitting InAs quantum dashes on InP-based heterostructures by GS-MBE for long-wavelength laser applications
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference10 articles.
1. Performance and physics of quantum-dot lasers with self-assembled columnar-shaped and 1.3-/spl mu/m emitting InGaAs quantum dots
2. High-temperature operating 1.3-μm quantum-dot lasers for telecommunication applications
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4. Highly efficient GaInAs/(Al)GaAs quantum-dot lasers based on a single active layer versus 980 nm high-power quantum-well lasers
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1. Comparison of carrier localization effects between InAs quantum dashes and quantum dots in a DWELL (dashes- or dots-in-a-well) configuration;Physica E: Low-dimensional Systems and Nanostructures;2020-10
2. Low Dark Current 1.55 Micrometer InAs Quantum Dash Waveguide Photodiodes;ACS Nano;2020-02-21
3. InAs/InP quantum-dash lasers;Nanoscale Semiconductor Lasers;2019
4. Comparison of dynamic properties of InP/InAs quantum-dot and quantum-dash lasers;Applied Physics Letters;2016-10-17
5. Laser field induced optical gain in a group III-V quantum wire;The European Physical Journal D;2016-08
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