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Numerical modeling of mid-infrared fiber optical parametric oscillator based on the degenerated FWM of tellurite photonic crystal fiber

机译:基于亚碲酸盐光子晶体光纤退化FWM的中红外光纤参量振荡器数值模拟

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摘要

Mid-infrared fiber optical parametric oscillators (MIR FOPOs) based on the degenerate four-wave mixing (DFWM) of tellurite photonic crystal fibers (PCFs) are proposed and modeled for the first time. Using the DFWM coupled-wave equations, numerical simulations are performed to analyze the effects of tellurite PCFs, single-resonant cavity, and pump source on the MIR FOPO performances. The numerical results show that: (1) although a longer tellurite PCF can decrease the pump threshold of MIR FOPOs to a few watts only, the high conversion-efficiency of MIR idler usually requires a short-length optimum PCF with low loss; (2) compared with the single-pass DFWM configurations of the MIR fiber sources published previously, the stable oscillation of signal light in single-resonant cavity can significantly promote the MIR idler output efficiency. With a suggested tellurite PCF as parametric gain medium, the theoretical prediction indicates that such a MIR FOPO could obtain a wide MIR-tunable range and a high conversion efficiency of more than 10%.
机译:首次提出了基于碲酸盐光子晶体光纤(PCF)的简并四波混频(DFWM)的中红外光纤参量振荡器(MIR FOPO)并进行了建模。使用DFWM耦合波方程,进行了数值模拟,以分析亚碲酸盐PCF,单谐振腔和泵浦源对MIR FOPO性能的影响。数值结果表明:(1)虽然较长的亚碲酸盐PCF可以将MIR FOPO的泵浦阈值降低到仅几瓦,但是MIR惰轮的高转换效率通常需要短长度的,具有低损耗的最佳PCF; (2)与以前发布的MIR光纤源的单通DFWM配置相比,单谐振腔中信号光的稳定振荡可以显着提高MIR惰轮的输出效率。使用建议的亚碲酸盐PCF作为参量增益介质,理论预测表明,这种MIR FOPO可以获得较宽的MIR可调范围和超过10%的高转换效率。

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