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Mode-locking peculiarities in an all-fiber erbium-doped ring ultrashort pulse laser with a highly-nonlinear resonator

机译:具有高度非线性谐振器的全光纤掺ring环形超短脉冲激光器的锁模特性

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Today ultrashort pulse fiber lasers are in great demand in a frequency metrology field, THz pulse spectroscopy, optical communication, quantum optics application, etc. Therefore mode-locked fiber lasers have been extensively investigated over the last decade due to a number of scientific, medical and industrial applications. It should be noted, that USP fiber lasers can be treated as an ideal platform to expand future applications due to a complex mode-locking nonlinear dynamics in a laser resonator. Up to now a series of novel mode-locking regimes have been investigated e.g. self-similar pulses, noise-like pulses, multi-bound solitons and soliton rain generation. Recently, we have used a highly nonlinear germanosilicate fiber (with germanium oxides concentration in the core ~ 50 mo1. %) inside the resonator for more reliable and robust launching of passive mode-locking based on the nonlinear polarization evolution effect in fibers. In this work we have measured promising and stable mode-locked regimes such as stretched pulses, soliton rain and multi-bound solitons formed in a highly-nonlinear ring laser and obtained by intracavity group velocity dispersion variation in slightly negative region. As a result, we have obtained the low noise ultrashort pulse generation with duration < 250 fs (more than 20 bound pulses when obtained multi-bound soliton generation with intertemporal width ~ 5 ps) at a repetition rate ~ 11.3 MHz (with signal-to-noise ratio at fundamental frequency > 59 dB) and relative intensity noise <-101 dBc/Hz.
机译:如今,超短脉冲光纤激光器在频率计量学,太赫兹脉冲光谱学,光通信,量子光学应用等领域都有大量需求。因此,由于科学,医学等众多方面的研究,锁模光纤激光器在过去十年中得到了广泛的研究。和工业应用。应当指出,由于激光谐振器中复杂的锁模非线性动力学,USP光纤激光器可以被视为扩展未来应用的理想平台。迄今为止,已经研究了一系列新颖的锁模方式,例如,专利文献1。自相似脉冲,类噪声脉冲,多界孤子和孤子雨的产生。最近,我们在谐振器内部使用了高度非线性的锗硅酸盐光纤(核心中的氧化锗浓度约为50%Mo1。%),以便基于光纤中的非线性偏振演化效应来更可靠,更可靠地发射无源锁模。在这项工作中,我们测量了有前途和稳定的锁模状态,例如在高度非线性的环形激光器中形成的并通过腔内群速度色散在略微负区域中形成的拉伸脉冲,孤子雨和多束孤子。结果,我们以<11.3 MHz的重复频率获得了持续时间<250 fs的低噪声超短脉冲生成(当获得时空宽度为〜5 ps的多边界孤子生成时,有超过20个约束脉冲)。 -基频> 59 dB时的噪声比)和相对强度噪声<-101 dBc / Hz。

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