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Novel development of dissipative-soliton-resonance pulses with pump power in an all-normal-dispersion fiber laser
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Novel development of dissipative-soliton-resonance pulses with pump power in an all-normal-dispersion fiber laser
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Evolution of dissipative-soliton-resonance (DSR) pulses in an all-normal-dispersion fiber laser with pump power under various operation conditions are experimentally studied. The fiber laser is mode-locked by using a nonlinear fiber loop mirror. Apart from the typical pulse broadening due to the peak power clamping effect, pulse breaking was observed. In addition, pulse narrowing with pump power increasing was observed. All the incompatible evolution of DSR pulses could be attributed to the multiple parameters change due to pump power increasing under specific operation conditions.
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