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On two-wavelength Raman fibre laser based on spectral broadening
A.E. Bednyakova
, M.P. Fedoruk
,
S.K. Turitsyn
, A.S. Kurkov
, O.I. Medvedkov
Aston Institute of Photonic Technologies (AiPT)
Aston University
Institute for Computational Technologies
A.M. Prokhorov General Physics Institute of the Russian Academy of Sciences
Fiber Optics Research Center of RAS
Novosibirsk State University
Research output
:
Chapter in Book/Published conference output
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Research Outputs
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Dive into the research topics of 'On two-wavelength Raman fibre laser based on spectral broadening'. Together they form a unique fingerprint.
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Keyphrases
Two-wavelength
100%
Laser-based
100%
Spectral Broadening
100%
Raman Fiber Laser
100%
Raman Laser
66%
High-Q Cavity
66%
Equation Model
33%
Optical Fiber
33%
Reflectivity
33%
Fiber Dispersion
33%
High Power
33%
Intra-cavity
33%
Multi-wavelength
33%
Fiber Bragg Grating
33%
Multi-wavelength Generation
33%
Pump Wave
33%
Telecommunications
33%
Propagation Equation
33%
Numerical Analysis
33%
Phase Fluctuation
33%
Single Fiber
33%
Fiber Loss
33%
Raman Pump
33%
Nonlinear Fiber Optics
33%
Fiber Waveguides
33%
Laser Source
33%
Laser Resonators
33%
Kerr Nonlinearity
33%
Laser Operation
33%
Optical Fiber Waveguides
33%
Biomedical Applications
33%
Two-peak
33%
Random Phase
33%
Stimulated Raman Scattering
33%
Noise Characteristics
33%
Raman Gain
33%
Two-wave
33%
Physical Effects
33%
Gain Depletion
33%
Raman Fiber Amplifier
33%
Cross-coherence
33%
Characteristic 2
33%
Wave Loss
33%
Output Spectrum
33%
Engineering
Fiber Laser
100%
Raman Fiber
100%
Spectral Broadening
100%
Fiber Bragg Grating
75%
Fiber Optics
50%
Q Factor
50%
Waveguide
50%
Reflectance
25%
Telecommunication
25%
Nonlinearity
25%
Fiber Dispersion
25%
Amplifier
25%
Broadening
25%
Pump Wave
25%
Medical Applications
25%
Propagation Equation
25%
Single Fibre
25%
Fiber Loss
25%
Laser Resonator
25%
Raman Gain
25%
Raman Pump
25%
Equation Model
25%
Good Level
25%
Stimulated Raman scattering
25%
Physics
Raman Fiber
100%
Spectral Broadening
100%
Fiber Laser
100%
Fiber Bragg Grating
75%
Waveguide
50%
Glass Fiber
50%
Q Factor
50%
Raman Laser
50%
Reflectance
25%
Telecommunication
25%
Resonator
25%
Laser Source
25%
Stimulated Raman Scattering
25%