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1.55 μm integrated modelocked semiconductor lasers
Y. Barbarin
Photonic Integration
Research output
:
Thesis
›
Phd Thesis 1 (Research TU/e / Graduation TU/e)
603
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Dive into the research topics of '1.55 μm integrated modelocked semiconductor lasers'. Together they form a unique fingerprint.
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Engineering
Active Component
3%
Amplifier
13%
Applications
10%
Cavity
20%
Characteristics
3%
Clock Recovery
13%
Compact Device
3%
Design
20%
Fabrication
3%
High Resolution
3%
Input Optical Signal
3%
Integration
13%
Laser Cavity
3%
Low Value
3%
Measured Output
3%
Measurement
3%
Mechanisms
3%
Minimization
3%
Models
3%
Multiple Access
3%
Obtains
3%
Operating Range
3%
Optical Lithography
6%
Optical Loss
10%
Optical Switch
3%
Optical Time
3%
Output Pulse
3%
Performance
3%
Properties
3%
Pulse Length
3%
Quantum Dot
6%
Realization
13%
Recovered Clock
3%
Repetition Rate
6%
Requirements
3%
Research
3%
Saturable Absorber
13%
Semiconductor
100%
Simulation
3%
Simulation Tool
6%
Single Chip
3%
Spectrum Analyzer
3%
Stability
3%
Time Domain
3%
Transforms
3%
Waveguide
13%
Wavelength
3%
Physics
Amplifier
3%
Bandwidth
6%
Domains
3%
Etching
3%
Fabrication
3%
High Resolution
3%
Information
3%
Laser
96%
Laser Cavities
3%
Laser Types
6%
Model
3%
Multiple Access
3%
Multiplexing
3%
Optical Power
10%
Optimization
3%
Output
3%
Performance
3%
Photolithography
3%
Pulses
31%
Quantum Dot
3%
Regimes
3%
Region
3%
Ring Laser
3%
Semiconductor Laser
100%
Simulation
10%
Spectra
6%
Stability
3%
Timescale Dynamics
3%
Utilization
10%
Value
3%
Vibration
3%
Work
3%
World
3%
Material Science
Absorber
13%
Characterization
3%
Devices
13%
Etching
3%
Laser
100%
Material
10%
Multiplexing
6%
Semiconductor Laser
100%
Switch
3%
Waveguide
6%