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Dichloromethane detection based on near-infrared absorptive sensing
Jae Ho Han
*
, Sang Min Yoon
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Review article
›
peer-review
3
Citations (Scopus)
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Dive into the research topics of 'Dichloromethane detection based on near-infrared absorptive sensing'. Together they form a unique fingerprint.
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Engineering
C-Band
100%
Continuous Wave
100%
Erbium-Doped Fiber
100%
Fiber Ring
100%
Industrial Applications
100%
Infrared Light
100%
Infrared Sensor
100%
Laser Linewidth
100%
Light Source
100%
Saturable Absorber
100%
Keyphrases
Biophotonics
33%
C-band
33%
Chlorinated Organic Solvents
33%
Continuous Wave
33%
Dichloromethane
100%
Erbium-doped Fiber
33%
External Noise
33%
Fiber Interferometer
33%
Industrial Application
33%
Industrial Processes
33%
Infrared Light Source
33%
Infrared Sources
33%
Inhalation
33%
Laser Frequency
33%
Laser Linewidth
33%
Laser-based
33%
Lipophilic
33%
Narrow Linewidth
33%
Near-infrared
100%
Near-infrared Sensor
33%
Optical Fiber Ring Laser
33%
Poisoning
33%
Sagnac Loop Mirror
33%
Saturable Absorber
33%
Spectroscopic Techniques
33%
Wavelength Range
33%
Physics
Continuous Radiation
33%
Erbium-Doped Fiber
33%
Infrared Sources
33%
Light Source
33%
Linewidth
66%
Near Infrared
100%
Ring Laser
33%
Chemistry
Dichloromethane
100%
Erbium
33%
Linewidth
66%
Spectroscopy
33%
Chemical Engineering
Dichloromethane
100%
Erbium
33%
Earth and Planetary Sciences
Erbium
100%