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Effects of Dissipative Terms on Dissipative Soliton Resonance Curve

Effects of Dissipative Terms on Dissipative Soliton Resonance Curve
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摘要 Dissipative soliton resonance (DSR) is a phenomenon where the energy of a soliton in a dissipative system increases without limit at certain values of the system parameters. Using the method of collective variable approach, we have found an approximate relation between the parameters of the normalized complex cubic-quintic Ginzburg-Landau equation where the resonance manifests itself. Comparisons between the results obtained by collective variable approach, and those obtained by the method of moments show good qualitative agreement. This choice also helps to see the influence of the active terms on the resonance curve, so can be very useful in constructing passively mode-locked laser that generate solitons with the highest possible energies. Dissipative soliton resonance (DSR) is a phenomenon where the energy of a soliton in a dissipative system increases without limit at certain values of the system parameters. Using the method of collective variable approach, we have found an approximate relation between the parameters of the normalized complex cubic-quintic Ginzburg-Landau equation where the resonance manifests itself. Comparisons between the results obtained by collective variable approach, and those obtained by the method of moments show good qualitative agreement. This choice also helps to see the influence of the active terms on the resonance curve, so can be very useful in constructing passively mode-locked laser that generate solitons with the highest possible energies.
出处 《Optics and Photonics Journal》 2017年第3期57-66,共10页 光学与光子学期刊(英文)
关键词 High-Energy Pulses DISSIPATIVE Soliton RESONANCE MODE-LOCKED LASER Fiber LASER RESONANCE Curve Active Terms Complex Cubic-Quintic GINZBURG-LANDAU Equation High-Energy Pulses Dissipative Soliton Resonance Mode-Locked Laser Fiber Laser Resonance Curve Active Terms Complex Cubic-Quintic Ginzburg-Landau Equation
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