par  Gusarov, Andreï;Fernandez Fernandez, Alberto  ;Berghmans, Francis
;Berghmans, Francis  ;Vasiliev, Sergei;Medvedkov, Oleg;Decréton, Marc;Deparis, Olivier;Mégret, Patrice
;Vasiliev, Sergei;Medvedkov, Oleg;Decréton, Marc;Deparis, Olivier;Mégret, Patrice  ;Blondel, Michel
;Blondel, Michel 
Référence Proceedings of SPIE - The International Society for Optical Engineering, 4134, 1, page (86-95)
Publication Publié, 2000-10
           ;Berghmans, Francis
;Berghmans, Francis  ;Vasiliev, Sergei;Medvedkov, Oleg;Decréton, Marc;Deparis, Olivier;Mégret, Patrice
;Vasiliev, Sergei;Medvedkov, Oleg;Decréton, Marc;Deparis, Olivier;Mégret, Patrice  ;Blondel, Michel
;Blondel, Michel 
Référence Proceedings of SPIE - The International Society for Optical Engineering, 4134, 1, page (86-95)
Publication Publié, 2000-10
                                                                                                       
			Article révisé par les pairs
                                                  
        | Résumé : | Optical fiber technology is considered now for communication and sensing applications in various radiation environments, like space and nuclear industry. We report on results from an on-going experimental program, which aims at using multiplexed Fiber Bragg gratings (FBGs), essential photonic components, for in-pile temperature monitoring in a nuclear reactor. To the best of our knowledge, its is the first time that multiplexed FBG-sensors are used in such conditions. © 2000 SPIE. | 



