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Effects of Laser Phase Drift on Coherent Optical CDMA
Leslie A. Rusch
,
H. Vincent Poor
Electrical and Computer Engineering
High Meadows Environmental Institute
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Article
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peer-review
23
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Dive into the research topics of 'Effects of Laser Phase Drift on Coherent Optical CDMA'. Together they form a unique fingerprint.
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Keyphrases
Optical Code Division multiple Access (OCDMA)
100%
Code Division multiple Access
100%
Coherent Optical
100%
Multiuser Detector
100%
Coherent Detection
100%
Binary Phase Shift Keying
100%
Phase Drift
100%
Binary Frequency Shift Keying
100%
Error Probability
100%
Asymptotic Results
50%
All-phase
50%
Semiconductor Lasers
50%
Bit Error Rate
50%
Near-far Problem
50%
Asymptotic Normality
50%
Matched Filtering
50%
Asymptotic Error
50%
Phase Variation
50%
Phase Tracking
50%
Point-to-point System
50%
Radio-frequency Systems
50%
Spreading Codes
50%
Computer Science
optical code division multiple access
100%
Coherent Detection
100%
Frequency Shift Keying
100%
Code Division Multiple Access
100%
Spreading Code
50%
Asymptotic Normality
50%
Asymptotic Result
50%
Random Sequence
50%
Frequency System
50%
Proof
50%
Probability
50%
Engineering
Code Division Multiple Access
100%
Frequency Shift Keying
66%
Multiuser
66%
Phase-Shift Keying
66%
Coherent Detection
66%
Radio Frequency
33%
Bit Error Rate
33%
Closed Form Solution
33%
Random Sequence
33%
Point System
33%
Physics
Code Division Multiple Access
100%
Detectors
100%
Frequency Shift
66%
Phase Shift Keying
66%
Probability Theory
66%
Semiconductor Laser
33%
Bit Error Rate
33%