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首页> 外文期刊>Optics Letters >20 nJ 200 fs all-fiber highly chirped dissipative soliton oscillator
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20 nJ 200 fs all-fiber highly chirped dissipative soliton oscillator

机译:20 nJ 200 fs全光纤高chi耗散孤子振荡器

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摘要

The dissipative solitons (DS) generated in fiber oscillators with mode-locking mechanism based on nonlinear polarization evolution in a single-mode fiber exhibit stability and energy limits at the cavity lengthening. We demonstrate an alternative approach that enables us to increase the cavity length of the DS oscillator up to 30 m, namely, by the use of a long section of polarization-maintaining (PM) fiber in an all-fiber cavity configuration. We have also identified the next limit of energy scaling related to the onset of Raman conversion of the DS spectrum. The maximum energy of the stable highly chirped DS realized with a 5.5 μm core PM fiber, amounts to ~20 nJ in ~200 fs pulses after a grating compressor. As a next step, energy scaling by means of a fiber core enlargement is discussed.
机译:在基于单模光纤中基于非线性偏振演化的锁模机制的光纤振荡器中产生的耗散孤子在腔体加长时表现出稳定性和能量极限。我们演示了一种替代方法,该方法使我们能够将DS振荡器的腔长度增加到30 m,即在全光纤腔配置中使用长段保偏(PM)光纤。我们还确定了与DS光谱拉曼转换开始有关的能量缩放的下一个限制。 5.5微米纤芯保偏光纤实现的稳定高chi DS的最大能量,在光栅压缩器后约200 fs脉冲中达到约20 nJ。下一步,将讨论通过纤维纤芯扩大进行能量缩放。

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