A platform for research: civil engineering, architecture and urbanism
Humidity-induced Brillouin frequency shift in perfluorinated polymer optical fibers
We report, to our knowledge, for the first time on humidity-induced Brillouin frequency shifts in perfluorinated graded index polymer optical fibers. A linear relation between Brillouin frequency shift and humidity was observed. Furthermore, the humidity coefficient of the Brillouin frequency shift is demonstrated to be a function of temperature (-107 to -64 kHz/%r.h. or -426 to -49 kHz m3/g in the range of 20 to 60 °C). An analytical description proves temperature and humidity as two mutually independent effects on the Brillouin frequency shift.
Humidity-induced Brillouin frequency shift in perfluorinated polymer optical fibers
We report, to our knowledge, for the first time on humidity-induced Brillouin frequency shifts in perfluorinated graded index polymer optical fibers. A linear relation between Brillouin frequency shift and humidity was observed. Furthermore, the humidity coefficient of the Brillouin frequency shift is demonstrated to be a function of temperature (-107 to -64 kHz/%r.h. or -426 to -49 kHz m3/g in the range of 20 to 60 °C). An analytical description proves temperature and humidity as two mutually independent effects on the Brillouin frequency shift.
Humidity-induced Brillouin frequency shift in perfluorinated polymer optical fibers
Schreier, Andy (author) / Wosniok, Aleksander (author) / Liehr, Sascha (author) / Krebber, Katerina (author)
2018-01-01
Article (Journal)
Electronic Resource
English
Noise suppression technique for distributed Brillouin sensing with polymer optical fibers
BASE | 2019
|British Library Online Contents | 2013
|Brillouin expanded time-domain analysis based ondual optical frequency combs
BASE | 2024
|