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Mid-Infrared InP-Based Discrete Mode Laser Diodes | IntechOpen
Mid-Infrared InP-Based Discrete Mode Laser Diodes | IntechOpen

Quantum-dot lasers provide high performance near 1.15 microns
Quantum-dot lasers provide high performance near 1.15 microns

Numerical Analysis of High-Brightness Tapered Ridge-Waveguide Lasers |  NUSOD Blog
Numerical Analysis of High-Brightness Tapered Ridge-Waveguide Lasers | NUSOD Blog

Semiconductor Corrugated Ridge Waveguide Distributed Feedback Lasers:  Experimental Characterization and Design Considerations
Semiconductor Corrugated Ridge Waveguide Distributed Feedback Lasers: Experimental Characterization and Design Considerations

Blue-green laser-diode technology moves ahead | Laser Focus World
Blue-green laser-diode technology moves ahead | Laser Focus World

All-laser-micromachining of ridge waveguides in LiNbO3 crystal for  mid-infrared band applications | Scientific Reports
All-laser-micromachining of ridge waveguides in LiNbO3 crystal for mid-infrared band applications | Scientific Reports

Q.4. The ridge waveguide cavity laser is shown in | Chegg.com
Q.4. The ridge waveguide cavity laser is shown in | Chegg.com

Laser Diode Fundamentals: Beam Properties
Laser Diode Fundamentals: Beam Properties

Astigmatism-free high-brightness 1060 nm edge-emitting lasers with narrow  circular beam profile
Astigmatism-free high-brightness 1060 nm edge-emitting lasers with narrow circular beam profile

Lasers for Hybrid Silicon Photonic Integration | Features | Apr 2020 |  Photonics Spectra
Lasers for Hybrid Silicon Photonic Integration | Features | Apr 2020 | Photonics Spectra

Structure of buried ridge waveguide laser. [Color figure can be viewed... |  Download Scientific Diagram
Structure of buried ridge waveguide laser. [Color figure can be viewed... | Download Scientific Diagram

Frontiers | Mid-Infrared ZnS Ridge Waveguide Fabricated by Femtosecond Laser  Ablation Combined With Ion Irradiation
Frontiers | Mid-Infrared ZnS Ridge Waveguide Fabricated by Femtosecond Laser Ablation Combined With Ion Irradiation

Fiber Coupled Laser Diode Basics: which technology for my application ?
Fiber Coupled Laser Diode Basics: which technology for my application ?

東京工業大学 荒井滋久/西山伸彦研究室
東京工業大学 荒井滋久/西山伸彦研究室

Mid-infrared Wavelength Conversion Laser for Highly Sensitive Gas Detection  | NTT Technical Review
Mid-infrared Wavelength Conversion Laser for Highly Sensitive Gas Detection | NTT Technical Review

Microscopic mechanism underlying double-state lasing in an InAs/GaAs  quantum dot laser diode elucidated using coupled rate equations and the  spontaneous emission recorded from a window structure
Microscopic mechanism underlying double-state lasing in an InAs/GaAs quantum dot laser diode elucidated using coupled rate equations and the spontaneous emission recorded from a window structure

Promotion of Specific Single-Transverse-Mode Beam Characteristics for  GaSb-Based Narrow Ridge Waveguide Lasers via Customized Parameter Design |  Nanoscale Research Letters | Full Text
Promotion of Specific Single-Transverse-Mode Beam Characteristics for GaSb-Based Narrow Ridge Waveguide Lasers via Customized Parameter Design | Nanoscale Research Letters | Full Text

All-laser-micromachining of ridge waveguides in LiNbO3 crystal for  mid-infrared band applications | Scientific Reports
All-laser-micromachining of ridge waveguides in LiNbO3 crystal for mid-infrared band applications | Scientific Reports

Waveguide Lasers - an overview | ScienceDirect Topics
Waveguide Lasers - an overview | ScienceDirect Topics

Ultraviolet and Visible Semiconductor Lasers | PARC
Ultraviolet and Visible Semiconductor Lasers | PARC

Q. The ridge waveguide cavity laser is shown below | Chegg.com
Q. The ridge waveguide cavity laser is shown below | Chegg.com

High-power single-mode triple-ridge waveguide semiconductor laser based on  supersymmetry: AIP Advances: Vol 11, No 9
High-power single-mode triple-ridge waveguide semiconductor laser based on supersymmetry: AIP Advances: Vol 11, No 9

InGaN-Based Lasers with an Inverted Ridge Waveguide Heterogeneously  Integrated on Si(100) | ACS Photonics
InGaN-Based Lasers with an Inverted Ridge Waveguide Heterogeneously Integrated on Si(100) | ACS Photonics