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Impact of Yb
2
+
on the anti-Stokes fluorescence cooling performance of Yb-doped silica fibers
Bailey Meehan
, Alexander R. Pietros
, Chun Wei Chen
, Thomas W. Hawkins
, Magnus Engholm
,
Peter D. Dragic
, Michel J.F. Digonnet
, John Ballato
Electrical and Computer Engineering
Micro and Nanotechnology Laboratory
Research output
:
Contribution to journal
›
Article
›
peer-review
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Dive into the research topics of 'Impact of Yb
2
+
on the anti-Stokes fluorescence cooling performance of Yb-doped silica fibers'. Together they form a unique fingerprint.
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Keyphrases
Cooling Performance
100%
Yb-doped Silica Fiber
100%
Anti-Stokes Fluorescence Cooling
100%
Yb2+
100%
Heat Generation
66%
Cooling Potential
33%
Full Potential
33%
Distinct Mechanism
33%
Industry Standards
33%
Cooling Applications
33%
Dy3+
33%
Negative Impact
33%
Quantum Efficiency
33%
Yb-doped Fiber Laser
33%
Thermal Performance
33%
Silica Fiber
33%
Laser Cooling
33%
Aluminosilicate Fiber
33%
Internal Mechanism
33%
Anti-Stokes Fluorescence
33%
Yb-doped Fiber Amplifier
33%
Modified Chemical Vapor Deposition
33%
Divalent Ytterbium
33%
Ytterbium-doped
33%
Material Science
Silicon Dioxide
100%
Ytterbium
100%
Fiber Optics
50%
Fiber Laser
50%
Chemical Vapor Deposition
50%
Aluminosilicate
50%
Amplifier
50%
Polyacrylonitrile
50%
Physics
Heat Generation
100%
Ytterbium
100%
Vapor Deposition
50%
Laser Cooling
50%
Fiber Laser
50%