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Status of fiber lasers study of on ytterbium doped fiber laser and laser spectroscopy of doped fibers; Etat de l`art des lasers a fibre, etude d`un laser a fibre dopee ytterbium et spectroscopie laser de fibres dopees

Abstract

This work shows all the advantages and drawbacks of the rare-earth-doped fiber lasers and fiber optical amplifiers, pointing out their potential use for instrumentation and optical fiber sensor technology. The theory of light propagation in optical fibers is presented in order to understand the manufacturing methods. A comparative study of preform surface and concentration analysis is performed. The gain behaviour is also thoroughly examined. A synthesis of all technological parameters of the fiber laser is then established and all technologies of the constituting integrated components are reviewed and compared. The experimental techniques mainly involve: site selective excitation tunability, cooperative luminescence, oxidation state changes induced by gamma irradiation, ytterbium-doped mono-mode continuous wave tunable three-level fiber laser. (TEC). 622 refs., 176 figs.
Authors:
Publication Date:
Jul 01, 1994
Product Type:
Thesis/Dissertation
Report Number:
CEA-N-2769
Reference Number:
SCA: 426002; 440200; PA: AIX-28:031392; EDB-97:056813; NTS-97:012143; SN: 97001765665
Resource Relation:
Other Information: TH: These (D. es Sc.).; PBD: Jul 1994
Subject:
42 ENGINEERING NOT INCLUDED IN OTHER CATEGORIES; 44 INSTRUMENTATION, INCLUDING NUCLEAR AND PARTICLE DETECTORS; GASERS; OPTICAL FIBERS; PHYSICAL RADIATION EFFECTS; ABSORPTION SPECTROSCOPY; COUPLING; DOPED MATERIALS; FIBER OPTICS; GAIN; KRAMERS THEOREM; LASER SPECTROSCOPY; LASERS; MEASURING INSTRUMENTS; OPTICAL PROPERTIES; OPTICAL PUMPING; POLARIZATION; REDOX REACTIONS; YTTERBIUM; YTTERBIUM ADDITIONS
OSTI ID:
455528
Research Organizations:
CEA Centre d`Etudes de Saclay, 91 - Gif-sur-Yvette (France). Dept. d`Electronique et d`Instrumentation Nucleaire
Country of Origin:
France
Language:
French
Other Identifying Numbers:
Other: ON: DE97620859; TRN: FR9601321031392
Availability:
INIS; OSTI as DE97620859
Submitting Site:
FRN
Size:
467 p.
Announcement Date:
Apr 17, 1997

Citation Formats

Magne, S. Status of fiber lasers study of on ytterbium doped fiber laser and laser spectroscopy of doped fibers; Etat de l`art des lasers a fibre, etude d`un laser a fibre dopee ytterbium et spectroscopie laser de fibres dopees. France: N. p., 1994. Web.
Magne, S. Status of fiber lasers study of on ytterbium doped fiber laser and laser spectroscopy of doped fibers; Etat de l`art des lasers a fibre, etude d`un laser a fibre dopee ytterbium et spectroscopie laser de fibres dopees. France.
Magne, S. 1994. "Status of fiber lasers study of on ytterbium doped fiber laser and laser spectroscopy of doped fibers; Etat de l`art des lasers a fibre, etude d`un laser a fibre dopee ytterbium et spectroscopie laser de fibres dopees." France.
@misc{etde_455528,
title = {Status of fiber lasers study of on ytterbium doped fiber laser and laser spectroscopy of doped fibers; Etat de l`art des lasers a fibre, etude d`un laser a fibre dopee ytterbium et spectroscopie laser de fibres dopees}
author = {Magne, S}
abstractNote = {This work shows all the advantages and drawbacks of the rare-earth-doped fiber lasers and fiber optical amplifiers, pointing out their potential use for instrumentation and optical fiber sensor technology. The theory of light propagation in optical fibers is presented in order to understand the manufacturing methods. A comparative study of preform surface and concentration analysis is performed. The gain behaviour is also thoroughly examined. A synthesis of all technological parameters of the fiber laser is then established and all technologies of the constituting integrated components are reviewed and compared. The experimental techniques mainly involve: site selective excitation tunability, cooperative luminescence, oxidation state changes induced by gamma irradiation, ytterbium-doped mono-mode continuous wave tunable three-level fiber laser. (TEC). 622 refs., 176 figs.}
place = {France}
year = {1994}
month = {Jul}
}