Serveur d'exploration sur les relations entre la France et l'Australie - Analysis (UK)

Index « Auteurs » - entrée « Bernard Dussardier »
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Bernard Deceuninck < Bernard Dussardier < Bernard E. Ebruke  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 3.
Ident.Authors (with country if any)Title
003239 (2005) Jharna Mandal [Royaume-Uni] ; TONG SUN [Royaume-Uni] ; Kenneth T. V. Granan [Royaume-Uni] ; Andreas T. Augousti [Royaume-Uni] ; Scott A. Wade [Australie] ; Stephen F. Collins [Australie] ; Gregory W. Baxter [Australie] ; Bernard Dussardier [France] ; Gérard Monnom [France] ; Rui T. Zheng [Singapour] ; Nam Q. Ngo [Singapour]Strain-imposed fiber optic laser-based system for wide range temperature measurement applications
003357 (2004) Jharna Mandal [Royaume-Uni] ; Tong Sun [Royaume-Uni] ; Kenneth T V. Grattan [Royaume-Uni] ; Andreas T. Augousti [Royaume-Uni] ; Scott A. Wade [Australie] ; Stephen F. Collins [Australie] ; Gregory W. Baxter [Australie] ; Bernard Dussardier [France] ; Grard Monnom [France]A wide temperature tunable fibre laser using a chirped grating and a type IIA fibre Bragg grating
003424 (2004) Suchandan Pal [Royaume-Uni, Inde] ; TONG SUN [Royaume-Uni] ; Kenneth T. V. Grattan [Royaume-Uni] ; Scott A. Wade [Australie] ; Stephen F. Collins [Australie] ; Gregory W. Baxter [Australie] ; Bernard Dussardier [France] ; Gérard Monnom [France]Bragg gratings written in Sn-Er-Ge-codoped silica fiber: investigation of photosensitivity, thermal stability, and sensing potential

List of associated KwdEn.i

Nombre de
documents
Descripteur
2Bragg grating
2Fiber lasers
2Grating in fiber
2Temperature measurement
2Temperature sensor
1Active gain medium
1Aluminium oxide
1Ambient temperature
1Annealing
1Annealing temperature
1Annealing time
1Bandwidth
1Bragg
1Bragg gratings
1Bragg wavelength
1Bragg wavelength variation
1Cavity length
1Centre wavelength
1Codoping
1Core diameter
1Different strain values
1Different temperatures
1Diffraction gratings
1Doped materials
1Erbium addition
1Erbium-doped fiber
1Exposure time
1Feedback
1Fiber optic sensors
1Fwhm bandwidth
1Gain medium
1Germanium addition
1Grating
1Growth behaviour
1Higher ratio
1Higher resolution detection system
1Laser
1Laser action
1Laser cavity
1Laser diode
1Laser diodes
1Laser energy
1Laser gain medium
1Laser linewidth
1Laser materials
1Laser oscillation
1Laser sensor
1Laser signal
1Laser wavelength
1Linear sensitivity
1Linewidth
1Linewidth variation
1Mandal
1Mean square error
1Narrow linewidth
1Narrower bandwidth
1Narrower linewidth
1Negligible decay
1Normal type
1Operational range
1Optical fibers
1Optical materials
1Optical spectrum analyser
1Output power
1Output spectra
1Oven temperature
1Passive sensor
1Phase mask
1Photosensitivity
1Practical applications
1Rare earth
1Reflectors
1Repetition frequency
1Resolution bandwidth
1Room temperature
1Same period
1Semiconductor lasers
1Sensor
1Sensor applications
1Sensor materials
1Sensor system
1Several cycles
1Silica
1Simultaneous measurement
1Square error
1Standard deviation
1Strain values
1Strains
1Temperature effect
1Temperature range
1Thermal stability
1Tin addition
1Transmission spectrum
1Tube oven
1Upper limit
1Wavelength
1Wavelength band
1Wavelength shift
1Wide temperature tunable
1Wider bandwidth

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