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Theoretical study on instantaneous linewidth of Fourier-domain mode-locked fiber lasers

机译:傅里叶域锁模光纤激光器瞬时线宽的理论研究

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We have numerically simulated the operation of the Fourier-domain mode-locked (FDML) fiber laser based on the wavelength reconstruction method instead of numerical solving the nonlinear Schrodinger equation. We studied the influences of the filter bandwidth and the relative time delay caused by the fiber chromatic dispersion on the instantaneous linewidth of the FDML fiber laser. The results show that the instantaneous linewidth broadens as the filter bandwidth and the relative time delay increase. When the filter has the bandwidth of 0.02 nm, the narrowest and broadest instantaneous linewidths are 0.024 and 0.042 nm, respectively. We give an understanding for the oscillation of the instantaneous linewidth of FDML. The presented result can be used to evaluate the performance achievable in the FDML fiber lasers.
机译:我们已经基于波长重建方法而不是对非线性Schrodinger方程进行数值求解,对傅里叶域锁模(FDML)光纤激光器的运行进行了数值模拟。我们研究了由光纤色散引起的滤波器带宽和相对时间延迟对FDML光纤激光器的瞬时线宽的影响。结果表明,瞬时线宽随着滤波器带宽和相对时延的增加而变宽。当滤光片的带宽为0.02 nm时,最窄和最宽的瞬时线宽分别为0.024 nm和0.042 nm。我们对FDML的瞬时线宽的振荡有了一个了解。提出的结果可用于评估FDML光纤激光器可实现的性能。

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