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Design and analysis of separate-absorption-transport-charge-multiplication traveling-wave avalanche photodetectors
Jin Wei Shi
, Yin Hsin Liu, Chee Wee Liu
電機工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
17
引文 斯高帕斯(Scopus)
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深入研究「Design and analysis of separate-absorption-transport-charge-multiplication traveling-wave avalanche photodetectors」主題。共同形成了獨特的指紋。
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Keyphrases
Traveling Wave
100%
Photoabsorption
100%
Charge multiplication
100%
Separate Absorption
100%
Avalanche Photodetector
100%
Avalanche Photodiode
75%
Low-voltage Operation
50%
Microwave Propagation
50%
Ultra-high
25%
Transport Problem
25%
SiGe
25%
Si-based
25%
High-speed Performance
25%
Novel Design
25%
Propagation Loss
25%
Bandwidth Limitation
25%
Saturation Power
25%
Frequency Response
25%
Gain-bandwidth Product
25%
Optical Fiber Communication
25%
Ultra High Gain
25%
Ultra-high Speed
25%
Superlattice
25%
Operation Voltage
25%
Hole Transport
25%
Photodistributed
25%
Electrical Bandwidth
25%
Novel Types
25%
Product Performance
25%
Power Bandwidth
25%
Propagation Effects
25%
Geometric Structure
25%
Avalanche Gain
25%
Boundary Reflection
25%
Absorption Length
25%
Photogenerated Carriers
25%
Low Excess Noise
25%
Output Saturation
25%
Guiding Structures
25%
Traveling Wave Structures
25%
Distributed Current
25%
Engineering
Charge Transport
100%
Avalanche Photodiode
100%
Photometer
100%
Traveling Wave
100%
Frequency Response
33%
Gain-Bandwidth Product
33%
Electrical Bandwidth
33%
Power Bandwidth
33%
Product Performance
33%
Limiting Factor
33%
Propagation Loss
33%
Absorption Length
33%
Photogenerated Carrier
33%
Superlattice
33%
Physics
Photometer
100%
Photoabsorption
100%
Traveling Wave
100%
Charge Transfer
100%
Photodiode
75%
Superlattice
25%
Earth and Planetary Sciences
Traveling Wave
100%
Photoabsorption
100%
Photometer
100%
Charge Transfer
100%
Limiting Factor
25%