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A Biochemical Sensor Based on Surface Plasmon Resonance Technology in Heterodyne Interferometry
Jyh Shyan Chiu, Shinn Fwu Wang,
Wen June Wang
電機工程學系
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Keyphrases
Adhesion Mechanism
20%
Attenuated Total Reflection
40%
Au Film
20%
Biochemical Sensor
100%
BK7 Glass
20%
Experimental Architecture
20%
Fluid Film
20%
Fluid Properties
20%
Heterodyne Interferometry
100%
High Sensitivity
20%
Instantaneous Measurement
20%
Metal Film
40%
P-polarization
20%
Phase Difference
20%
Phase Variation
20%
Polarized Light
20%
Reflection Effect
20%
Refractive Index
40%
Refractive Index Unit
20%
Resonance Principle
20%
S-polarization
20%
Sensor-based
100%
Surface Plasma Resonance
20%
Surface Plasmon Resonance Technology
100%
Ti Film
20%
Engineering
Biochemical Sensor
100%
Biosensor
40%
Fluid Property
20%
Interferometry
100%
Measured Sample
20%
Phase Difference
20%
Refractive Index
60%
Refractivity
60%
Surface Plasmon
100%
Total Internal Reflection
20%
Physics
Fluid Film
33%
Fluid Property
33%
Heterodyne Interferometry
100%
Metal Films
66%
Photoelectricity
33%
Plasma Resonance
33%
Refractivity
100%
Surface Plasmon Resonance
100%
Material Science
Biosensor
66%
Film
66%
Fluid Property
33%
Metal Film
66%
Refractive Index
100%
Surface (Surface Science)
33%
Surface Plasmon Resonance
100%
Chemistry
Attenuated Total Reflection
33%
Interferometry
100%
Photoelectricity
33%
Refractive Index
100%
Surface Plasmon Resonance
100%
Chemical Engineering
Film
100%
Interferometry
100%