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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Ultrafast all-optical switching utilizing the optical Kerr effect in polarization-maintaining single-mode fibers
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Ultrafast all-optical switching utilizing the optical Kerr effect in polarization-maintaining single-mode fibers

机译:在保持偏振的单模光纤中利用光学克尔效应的超快全光切换

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An ultrafast all-optical switching scheme utilizing the optical Kerr effect in two birefringent fibers concatenated with each fast axis crossed is proposed. Stable optical Kerr modulation and all-optical demultiplexing of an ultrashort (30 p.s.) optical pulse train at 1.97 GHz from a gain-switched distributed-feedback laser diode (DFB LD) have been sufficiently demonstrated using CW mode-locking Nd:YAG laser pulses as a pump. Switching speed and required pump powers are studied in terms of fiber bandwidth due to fiber birefringence, and combined effects of chromatic and polarization dispersions on Kerr modulation profiles. By utilizing the optical Kerr modulation properties in the presence of dispersions, the nondiagonal yx component of the nonlinear refractive index is also determined to be 0.34 relative to the diagonal component xx. The intrinsic stability and ultimate switching capabilities are discussed.
机译:提出了一种在两根双折射光纤中利用光学克尔效应的超快全光切换方案,这两条双折射光纤与每个快轴交叉。使用CW锁模Nd:YAG激光脉冲已充分证明了来自增益切换的分布式反馈激光二极管(DFB LD)的1.97 GHz超短(30 ps)光脉冲串的稳定光学Kerr调制和全光解复用作为泵。根据由于光纤双折射引起的光纤带宽以及色度和偏振色散对Kerr调制曲线的综合影响,研究了开关速度和所需的泵浦功率。通过在色散存在下利用光学克尔调制特性,非线性折射率的非对角yx分量也被确定为相对于对角分量xx为0.34。讨论了固有稳定性和最终切换能力。

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