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Study on All-Optical Switching by Nonlinear Optical Loop Mirror Base on Microstructured Optical Fiber

机译:基于微结构光纤的非线性光学环镜全光切换研究

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In this paper, the experiment on all-optical switching based on microstructured optical fiber (MOF) is reported. In experiment, a 25-meter-long MOF(Y=36W~(-1)km~(-1)@1550nm) is used as nonlinear medium of nonlinear optical loop mirror and the input signal is generated by a 10GHz tunable picosecond laser source (u~2t TMLL1550), with a full-width at half-maximum (FWHM) pulse width of 2 ps centered at 1550 nm. With the increase of input power, a π nonlinear phase shift is obtained by 40/60 coupler in experiment, but the same thing not be found by 48/52 coupler. Strong confinement of electromagnetic radiation in the fiber core allow that microstructured optical fiber can have a much higher nonlinearity per unit length than conventional fibers, and consequently devices based on such fibers can be much shorter in length than their conventional counterparts. Additionally, the switching can also be used as reshaping devices.
机译:本文报道了基于微结构光纤(MOF)的全光交换实验。在实验中,使用25米长的MOF(Y = 36W〜(-1)km〜(-1)@ 1550nm)作为非线性光学环镜的非线性介质,输入信号由10GHz可调皮秒激光器产生光源(u〜2t TMLL1550),半峰全宽(FWHM)的脉冲宽度为2 ps,以1550 nm为中心。随着输入功率的增加,实验中40/60耦合器获得了π非线性相移,而48/52耦合器却没有发现相同的东西。纤维芯中电磁辐射的强烈限制使微结构化光纤的每单位长度的非线性可以比常规纤维高得多,因此,基于此类纤维的设备的长度可以比​​常规光纤短得多。另外,该开关也可以用作整形设备。

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