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Fiber lasers with phosphate photonic crystal and multicore fibers
N. Peyghambarian
, A. Schülzgen
, L. Li
, V. L. Temyanko
,
J. V. Moloney
, H. Li
James C Wyant Coll Optical Sci
Materials Science & Engr
James C Wyant Coll Optical Sci
Mathematics
Research output
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Chapter in Book/Report/Conference proceeding
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Keyphrases
Phosphate
100%
Fiber Laser
100%
Photonic Crystal Fiber
100%
Multicore Fiber
100%
Output Frequency
40%
Slope Efficiency
40%
Step-index Fibers
40%
Single-frequency Fiber Laser
40%
National Science Foundation
20%
Arizona
20%
Photonics
20%
Attractive Solutions
20%
Fiber Length
20%
Integrated Device
20%
High Brightness
20%
Air Force
20%
Power Output
20%
Multi-mode
20%
Single-frequency Laser
20%
High Output Power
20%
Laser Source
20%
Narrow Linewidth
20%
Signal Power
20%
Pumping Power
20%
Mode Area
20%
Fundamental Mode
20%
Output Spectrum
20%
Laser Cavity
20%
Output Power Density
20%
Fiber Bragg Grating
20%
Active Core
20%
Long Fiber
20%
Active Fiber
20%
Fiber Design
20%
Single-mode Output
20%
High Power Fiber Laser
20%
Active Length
20%
Heterodyne Measurement
20%
Evanescent Field Coupling
20%
High Output Power Density
20%
Doped Optical Fibers
20%
Device Power
20%
Heavily Doped
20%
Engineering
Photonics
100%
Multicore Fiber
100%
Fiber Laser
100%
Output Power
66%
Power Density
33%
Step Index
33%
Frequency Output
33%
Index Fiber
33%
Fiber Bragg Grating
16%
Fibre Length
16%
Optical Fiber
16%
Multimode
16%
Evanescent
16%
Optical Spectrum
16%
Signal Power
16%
Pump Power
16%
Fundamental Mode
16%
Long Fiber
16%
Active Fiber
16%
Integrated Circuit
16%
Laser Cavity
16%
Physics
Fiber Laser
100%
Photonic Crystal
100%
Linewidth
33%
Fiber Bragg Grating
16%
Integrated Circuit
16%
Photonics
16%
Laser Source
16%
Laser Cavity
16%
Fundamental Mode
16%