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Stability analysis of second order pulsed Raman laser in dispersion managed systems

机译:色散管理系统中二阶脉冲拉曼激光器的稳定性分析

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Wavelength tunable synchronous pulse sources are highly desirable for spectroscopy and optical diagnostics. The common method to generate short pulses in the fiber is the use of nonlinear induced spectral broadening which result in soliton shaping in anomalous dispersion regime. However, to generate ultra-short pulses, broadband gain mechanism is also required. In recent years, Raman fiber lasers have retrieved strong interest due to their capability of serving as pump sources in gain-flattened amplifiers for optical communication systems. The fixed-wavelength Raman lasers have been widely studied in the last years, but recently, much focus has been on the multi wavelength tunable Raman fiber lasers which generate output Stokes pulses in a broad wavelength range by so called cascaded stimulated Raman scattering. In this paper we investigate synchronous 1st and 2nd order pulsed Raman lasers that can achieve frequency spacing of up to 1000cm-1 that is highly desired for CARS microscopy. In particular, analytical and numerical analysis of pulsed stability derived for Raman lasers by using dispersion managed telecom fibers and pumped by 1530nm fiber lasers. We show the evolution of the 1st and 2nd order Stokes signals at the output for different pump power and SMF length (determines the net anomalous dispersion) combinations. We investigated the stability of dispersion managed synchronous Raman laser up to second order both analytically and numerically. The results show that the stable 2nd order Raman Stokes pulses with 0.04W to 0.1W peak power and 2ps to 3.5ps pulse width can be achieved in dispersion managed system.
机译:波长可调同步脉冲源对于光谱学和光学诊断是非常需要的。在光纤中产生短脉冲的常用方法是使用非线性感应光谱展宽,这会导致反常色散状态下的孤子整形。然而,为了产生超短脉冲,还需要宽带增益机制。近年来,拉曼光纤激光器由于能够在光通信系统的增益平坦放大器中用作泵浦源而引起了人们的极大兴趣。固定波长拉曼激光器在过去的几年中得到了广泛的研究,但是最近,人们集中在多波长可调谐拉曼光纤激光器上,这种多波长可调谐拉曼光纤激光器通过所谓的级联受激拉曼散射产生在宽波长范围内的输出斯托克斯脉冲。在本文中,我们研究了同步的一阶和二阶脉冲拉曼激光器,该激光器可以实现高达1000cm-1的频率间隔,这是CARS显微镜非常需要的。特别是通过使用色散管理的电信光纤并由1530nm光纤激光器泵浦获得的拉曼激光器的脉冲稳定性的分析和数值分析。我们显示了在不同泵浦功率和SMF长度(确定净反常色散)组合下输出的一阶和二阶斯托克斯信号的演变。我们通过分析和数值研究了色散管理的同步拉曼激光器的稳定性,直到二阶。结果表明,在色散管理系统中,可以获得稳定的二阶拉曼斯托克斯脉冲,其峰值功率为0.04W至0.1W,脉冲宽度为2ps至3.5ps。

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