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Spectral comb of highly chirped pulses generated via cascaded FWM of two frequency-shifted dissipative solitons

机译:通过两个频移溶液孤子的级联FWM产生高度啁啾脉冲的光谱梳

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摘要

Abstract Dissipative solitons generated in normal-dispersion mode-locked lasers are stable localized coherent structures with a mostly linear frequency modulation (chirp). The soliton energy in fiber lasers is limited by the Raman effect, but implementation of the intracavity feedback at the Stokes-shifted wavelength enables synchronous generation of a coherent Raman dissipative soliton. Here we demonstrate a new approach for generating chirped pulses at new wavelengths by mixing in a highly-nonlinear fiber of these two frequency-shifted dissipative solitons, as well as cascaded generation of their clones forming in the spectral domain a comb of highly chirped pulses. We observed up to eight equidistant components in the interval of more than 300 nm, which demonstrate compressibility from ~10 ps to ~300 fs. This approach, being different from traditional frequency combs, can inspire new developments in fundamental science and applications such as few-cycle/arbitrary-waveform pulse synthesis, comb spectroscopy, coherent communications and bio-imaging.
机译:在正常色散模式锁定激光器中产生的摘要耗散孤子是具有主要线性频率调制(Chirp)的稳定局部相干结构。光纤激光器中的孤子能量受拉曼效应的限制,但是在斯托克斯偏移波长下的腔内反馈的实施能够同步产生相干拉曼耗散孤子。在这里,我们通过在这两个频移耗散孤子的高度非线性纤维中混合,以及在高度啁啾脉冲的梳状中混合,通过混合在新的波长中产生新波长的啁啾脉冲的新方法。我们在超过300nm的间隔中观察到八个等距分量,表明从〜10 pe到〜300 fs的压缩性。这种方法与传统频率梳理不同,可以激发基础科学和应用中的新发展,如几个周期/任意波形脉冲合成,梳点光谱,相干通信和生物成像。

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