Fiber enhanced Raman spectroscopy (FERS) is an arising new technique for versatile highly sensitive and selective multigas analysis in various applications, such as environmental monitoring and medical breath diagnosis. In this study, the performance of FERS was thoroughly studied with the help of a specially designed multichannel Raman chemical imaging. Several types of hollow core photonic crystal fibers were thoroughly analyzed in terms of their performance in light confinement and sensitive gas sensing. The optimal fiber length for Raman gas sensing was found to be 15 cm in our spectroscopic system. To separate the Raman scattering of the target gas molecules from the background generated by the silica microstructure of the fiber, the o...
Breath gas analysis is a novel powerful technique for noninvasive, early-stage diagnosis of metaboli...
Breath gas analysis is a novel powerful technique for noninvasive, early-stage diagnosis of metaboli...
Versatile multigas analysis bears high potential for environmental sensing of climate relevant gases...
Fiber enhanced Raman spectroscopy (FERS) is a powerful multigas analysis technique. It combines the ...
Fiber enhanced Raman spectroscopy (FERS) is a powerful multigas analysis technique. It combines the ...
In this dissertation, highly sensitive optical fiber sensors based on Raman spectroscopy (RS) and su...
Raman enhancement techniques are essential for gas analysis to increase the detection sensitivity of...
Spontaneous gas-phase Raman scattering using a hollow-core photonic bandgap fiber (HC-PBF) for both ...
Versatile and flexible gas analysis for compositional identification and quantification is a demand ...
The fast and reliable analysis of the natural gas composition requires the simultaneous quantificati...
The fast and reliable analysis of the natural gas composition requires the simultaneous quantificati...
The aim of the work described in this thesis is the development of a gas sensor, capable of high sen...
The fast and reliable analysis of the natural gas composition requires the simultaneous quantificati...
Versatile multigas analysis bears high potential for environmental sensing of climate relevant gases...
The fast and reliable analysis of the natural gas composition requires the simultaneous quantificati...
Breath gas analysis is a novel powerful technique for noninvasive, early-stage diagnosis of metaboli...
Breath gas analysis is a novel powerful technique for noninvasive, early-stage diagnosis of metaboli...
Versatile multigas analysis bears high potential for environmental sensing of climate relevant gases...
Fiber enhanced Raman spectroscopy (FERS) is a powerful multigas analysis technique. It combines the ...
Fiber enhanced Raman spectroscopy (FERS) is a powerful multigas analysis technique. It combines the ...
In this dissertation, highly sensitive optical fiber sensors based on Raman spectroscopy (RS) and su...
Raman enhancement techniques are essential for gas analysis to increase the detection sensitivity of...
Spontaneous gas-phase Raman scattering using a hollow-core photonic bandgap fiber (HC-PBF) for both ...
Versatile and flexible gas analysis for compositional identification and quantification is a demand ...
The fast and reliable analysis of the natural gas composition requires the simultaneous quantificati...
The fast and reliable analysis of the natural gas composition requires the simultaneous quantificati...
The aim of the work described in this thesis is the development of a gas sensor, capable of high sen...
The fast and reliable analysis of the natural gas composition requires the simultaneous quantificati...
Versatile multigas analysis bears high potential for environmental sensing of climate relevant gases...
The fast and reliable analysis of the natural gas composition requires the simultaneous quantificati...
Breath gas analysis is a novel powerful technique for noninvasive, early-stage diagnosis of metaboli...
Breath gas analysis is a novel powerful technique for noninvasive, early-stage diagnosis of metaboli...
Versatile multigas analysis bears high potential for environmental sensing of climate relevant gases...