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Cooling Yb-Doped Silica Fibers and Fiber Lasers with Anti-Stokes Pumping
Benjamin N. Frey
, Enkeleda Balliu
, Pierre Baptiste Vigneron
, Jenny Knall
, Thomas W. Hawkins
, Bailey Meehan
, Mary Ann Cahoon
, John Ballato
, Magnus Engholm
,
Peter D. Dragic
, Nanjie Yu
, Tommy Boilard
, Martin Bernier
, Michel J.F. Digonnet
Electrical and Computer Engineering
Micro and Nanotechnology Laboratory
Research output
:
Chapter in Book/Report/Conference proceeding
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Conference contribution
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Keyphrases
Fiber Laser
100%
Yb-doped Silica Fiber
100%
Anti-Stokes Pumping
100%
Aluminosilicate
66%
Al Concentration
66%
Pumping Power
66%
Anti-Stokes Fluorescence
66%
Nanoparticles
33%
Silica
33%
Temperature Effect
33%
Impurities
33%
Alkali Earth
33%
Atmospheric Pressure
33%
Yb-doped Fiber
33%
LaF3
33%
Inferred Value
33%
Pump Absorption
33%
Silica Fiber
33%
Fiber Amplifier
33%
Single-mode Fiber
33%
Cooling Properties
33%
Composition Control
33%
Heat Extraction
33%
Extracted Heat
33%
Optical Cooling
33%
Residual Loss
33%
Quenching Concentration
33%
LuF3
33%
Doped Nanoparticles
33%
Engineering
Silica Fibre
100%
Fiber Laser
100%
Nanoparticle
50%
Pump Power
50%
Broad Range
25%
Amplifier
25%
Temperature Dependence
25%
Quenching
25%
Measured Temperature
25%
Key Parameter
25%
Heat Extraction
25%
Single Mode Fibers
25%
Silicon Dioxide
25%
Atmospheric Pressure
25%
Material Science
Fiber Laser
100%
Silicon Dioxide
100%
Nanoparticle
40%
Aluminosilicate
40%
Amplifier
20%