Electronically tunable, 1. 55-. mu. m erbium-doped fiber laer
- Edward L. Ginzton Laboratory, Stanford University, Stanford, California 94305 (US)
An erbium-doped, silica-based fiber laser was electronically tuned over two ranges from 1529.6 to 1533.3 nm and from 1543.8 to 1563.0 nm with more than 13 mW of maximum power. The tuning element was an intracavity acousto-optic modulator (Bragg cell) configured to feed back the first-order, frequency-shifted deflected beam. The maximum optical/acoustic tuning coefficient was {minus}15 nm/MHz.
- OSTI ID:
- 7169267
- Journal Information:
- Optics Letters; (USA), Journal Name: Optics Letters; (USA) Vol. 15:5; ISSN 0146-9592; ISSN OPLED
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
42 ENGINEERING
426002* -- Engineering-- Lasers & Masers-- (1990-)
ALLOYS
CHALCOGENIDES
DOPED MATERIALS
ELECTROMAGNETIC RADIATION
ERBIUM ADDITIONS
ERBIUM ALLOYS
FIBERS
INFRARED RADIATION
LASERS
MATERIALS
MINERALS
NEAR INFRARED RADIATION
OPTICAL FIBERS
OXIDE MINERALS
OXIDES
OXYGEN COMPOUNDS
RADIATIONS
RARE EARTH ADDITIONS
RARE EARTH ALLOYS
SILICA
SILICON COMPOUNDS
SILICON OXIDES
SOLID STATE LASERS
TUNING
426002* -- Engineering-- Lasers & Masers-- (1990-)
ALLOYS
CHALCOGENIDES
DOPED MATERIALS
ELECTROMAGNETIC RADIATION
ERBIUM ADDITIONS
ERBIUM ALLOYS
FIBERS
INFRARED RADIATION
LASERS
MATERIALS
MINERALS
NEAR INFRARED RADIATION
OPTICAL FIBERS
OXIDE MINERALS
OXIDES
OXYGEN COMPOUNDS
RADIATIONS
RARE EARTH ADDITIONS
RARE EARTH ALLOYS
SILICA
SILICON COMPOUNDS
SILICON OXIDES
SOLID STATE LASERS
TUNING