Nd:MgO:LiNbO/sub 3/ channel waveguide laser devices

A report is presented on the fabrication and efficient CW operation at 1.085 mu m of Nd:MgO:LiNbO/sub 3/ proton-exchanged channel waveguide lasers and amplifiers optically pumped at 0.814 mu m. Thresholds as low as 1.5 mW and slope efficiencies up to 34% were achieved in monolithic miniature laser d...

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Published inIEEE journal of quantum electronics Vol. 27; no. 3; pp. 618 - 625
Main Authors Lallier, E., Pocholle, J.P., Papuchon, M., DeMicheli, M.P., Li, M.J., He, Q., Ostrowsky, D.B., Grezes-Besset, C., Pelletier, E.
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LanguageEnglish
Published United States IEEE 01.03.1991
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Abstract A report is presented on the fabrication and efficient CW operation at 1.085 mu m of Nd:MgO:LiNbO/sub 3/ proton-exchanged channel waveguide lasers and amplifiers optically pumped at 0.814 mu m. Thresholds as low as 1.5 mW and slope efficiencies up to 34% were achieved in monolithic miniature laser devices. Up to 14 mW of output power could be achieved without observation of photorefractive damage. Diode laser pumping was also demonstrated. For the amplifier a small-signal gain of 7.5 dB was achieved for 22 mW of coupled pump power. Experimental results were analyzed with the use of a mode overlap formalism and a value of 0.93 was found for the pump quantum efficiency. Absorption spectra, fluorescence spectra, and lifetime measurements are also reported for the bulk and waveguide material.< >
AbstractList This paper reports on the fabrication and efficient CW operation at 1.085 {mu}m of Nd:MgO:LiNbO{sub 3} proton-exchanged channel waveguide lasers and amplifiers optically pumped at 0.814 {mu}m. Thresholds as low as 1.5 mW and slope efficiencies up to 34% were achieved in monolithic miniature laser devices. Up to 14 MW of output power could be achieved without observation of photorefractive damage. Diode laser pumping was also demonstrated. For the amplifier a small-signal gain of 7.5 dB was achieved for 22 mW of coupled pump power. Experimental results were analyzed with the use of a mode overlap formalism and a value of 0.93 was found for the pump quantum efficiency. Absorption spectra, fluorescence spectra, and lifetime measurements are also reported for the bulk and waveguide material.
A report is presented on the fabrication and efficient CW operation at 1.085 mu m of Nd:MgO:LiNbO/sub 3/ proton-exchanged channel waveguide lasers and amplifiers optically pumped at 0.814 mu m. Thresholds as low as 1.5 mW and slope efficiencies up to 34% were achieved in monolithic miniature laser devices. Up to 14 mW of output power could be achieved without observation of photorefractive damage. Diode laser pumping was also demonstrated. For the amplifier a small-signal gain of 7.5 dB was achieved for 22 mW of coupled pump power. Experimental results were analyzed with the use of a mode overlap formalism and a value of 0.93 was found for the pump quantum efficiency. Absorption spectra, fluorescence spectra, and lifetime measurements are also reported for the bulk and waveguide material.< >
Title describes article content.
Author Pocholle, J.P.
Papuchon, M.
Li, M.J.
Ostrowsky, D.B.
Pelletier, E.
Lallier, E.
Grezes-Besset, C.
DeMicheli, M.P.
He, Q.
Author_xml – sequence: 1
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  surname: Pocholle
  fullname: Pocholle, J.P.
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  surname: Papuchon
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  surname: DeMicheli
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  surname: Li
  fullname: Li, M.J.
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  fullname: Pelletier, E.
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Title describes article content.
This paper reports on the fabrication and efficient CW operation at 1.085 {mu}m of Nd:MgO:LiNbO{sub 3} proton-exchanged channel waveguide lasers and amplifiers...
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SubjectTerms 426002 - Engineering- Lasers & Masers- (1990-)
ABSORPTION SPECTRA
ALKALI METAL COMPOUNDS
ALKALINE EARTH METAL COMPOUNDS
ALLOYS
AMPLIFICATION
BARYONS
CHALCOGENIDES
EFFICIENCY
ELECTROMAGNETIC RADIATION
ELEMENTARY PARTICLES
ENERGY
ENGINEERING
FABRICATION
FERMIONS
FLUORESCENCE
GAIN
HADRONS
INFRARED RADIATION
ION EXCHANGE
Laser excitation
LASERS
LIFETIME
LITHIUM COMPOUNDS
LUMINESCENCE
MAGNESIUM COMPOUNDS
MAGNESIUM OXIDES
NEAR INFRARED RADIATION
NEODYMIUM ADDITIONS
NEODYMIUM ALLOYS
NIOBATES
NIOBIUM COMPOUNDS
NUCLEONS
OPERATION
Operational amplifiers
Optical amplifiers
Optical device fabrication
OPTICAL PUMPING
Optical waveguides
OXIDES
OXYGEN COMPOUNDS
Power amplifiers
PROTONS
Pump lasers
PUMPING
RADIATIONS
RARE EARTH ADDITIONS
RARE EARTH ALLOYS
REFRACTORY METAL COMPOUNDS
Semiconductor optical amplifiers
SOLID STATE LASERS
SPECTRA
Stimulated emission
THRESHOLD ENERGY
TRANSITION ELEMENT COMPOUNDS
Waveguide lasers
WAVEGUIDES
Title Nd:MgO:LiNbO/sub 3/ channel waveguide laser devices
URI https://ieeexplore.ieee.org/document/81371
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Volume 27
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