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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Soliton-based ultrafast multi-wavelength nonlinear switching in dual-core photonic crystal fibre
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Soliton-based ultrafast multi-wavelength nonlinear switching in dual-core photonic crystal fibre

机译:双芯光子晶体光纤中基于孤子的超快多波长非线性切换

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摘要

Systematic experimental study of ultrafast multi-wavelength all-optical switching performance in a dual-core photonic crystal fibre is presented. The focus is on nonlinearly induced switching between the two output ports at non-excitation wavelengths, which are generated during nonlinear propagation of femtosecond pulses in the anomalous dispersion region of a dual-core photonic crystal fibre made of multicomponent glass. Spatial and spectral characteristics of the fibre output radiation were measured separately for both fibre cores under various polarization and intensity conditions upon selective, individual excitation of each fibre core. Polarization-controlled nonlinear switching performance at multiple non-excitation wavelengths was demonstrated in the long-wavelength optical communication bands and beyond. Depending on the input pulse polarization, narrowband switching operation at 1560 nm and 1730 nm takes place with double core extinction ratio contrasts of 9 dB and 14.5 dB, respectively. Moreover, our approach allows switching with simultaneous wavelength shift from 1650 to 1775 nm with extinction ratio contrast larger than 18 dB. In addition, non-reciprocal behaviour of the soliton fission process under different fibre core excitations was observed and its effect on the multi-wavelength nonlinear switching performance was explained, taking into account the slight dual-core structure asymmetry. The obtained results represent ultrafast all-optical switching with an extended dimension of wavelength shift, controllable with both the input radiation intensity and the polarization by simple propagation along a 14 mm long fibre.
机译:提出了双芯光子晶体光纤中超快多波长全光开关性能的系统实验研究。重点在于非激发波长在两个输出端口之间的非线性感应切换,这是在飞秒脉冲在由多组分玻璃制成的双芯光子晶体光纤的异常色散区域中非线性传播期间产生的。在对每个纤维芯进行选择性,单独的激发后,分别在不同的偏振和强度条件下对两个纤维芯分别测量纤维输出辐射的空间和光谱特性。在长波长光通信频段及以上波段中,证明了在多个非激励波长下的偏振控制非线性开关性能。根据输入脉冲极化,在1560 nm和1730 nm处进行窄带切换操作时,双芯消光比对比度分别为9 dB和14.5 dB。此外,我们的方法允许在1650到1775 nm的波长范围内同时切换,并且消光比对比度大于18 dB。此外,考虑到轻微的双核结构不对称性,观察到孤子裂变过程在不同纤维核激励下的非互易行为,并解释了其对多波长非线性开关性能的影响。获得的结果代表了超快的全光交换,具有扩展的波长偏移尺寸,通过沿着14毫米长的光纤进行简单传播,可以同时控制输入辐射强度和偏振。

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