首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Modulation instability in collinear three-core optical fibers
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Modulation instability in collinear three-core optical fibers

机译:共线三芯光纤中的调制不稳定性

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Modulation instability (MI) in a collinear three-core optical fiber, namely, an optical fiber that consists of three identical cores aligned symmetrically along a straight line, is analyzed in detail for the symmetric and antisymmetric continuous-wave (CW) states in the normal and anomalous dispersion regimes. The symmetric CW state, where the fields in the two side cores are identical, exists only with certain combinations of powers in the side cores and the center core within a limited range of total power, and these characteristics are governed by the linear coupling and the nonlinear coefficient of the fiber. The symmetric CW state generates MI characteristics not observed previously. In the anomalous dispersion regime, as the total power increases from a threshold value, three MI bands are generated and then merge rapidly into a single band, and the MI gain is insensitive to the linear coupling coefficient and the coupling-coefficient dispersion (CCD) of the fiber. In the normal dispersion regime, the generation of MI depends critically on the CCD. Two MI bands are generated from the CCD at a total power smaller than a critical value that depends on the linear coupling, the dispersion, and the nonlinear coefficient of the fiber. No MI can be generated without CCD. The antisymmetric CW state, where the fields in the two side cores have equal amplitudes of opposite signs and the field in the center core is zero, exists at any power. For this state, the MI characteristics are qualitatively similar to those of an equilateral three-core fiber. The study also includes direct numerical verification of the MI analysis with wave propagation simulation. (C) 2017 Optical Society of America
机译:CONSINEER三芯光纤中的调制不稳定性(MI),即由沿着直线对称对齐的三个相同芯组成的光纤,对称和反对称连续波(CW)状态进行详细地分析正常和异常的分散制度。对称CW状态,其中两个侧核中的字段相同,仅存在侧面核中的某些功率组合,并且在总功率范围内的中心核心,并且这些特性由线性耦合控制纤维的非线性系数。对称CW状态生成先前未观察到的MI特征。在异常的色散状态下,随着总功率从阈值增加,产生三个MI频带,然后快速合并到单个频带中,并且MI增益对线性耦合系数和耦合系数分散(CCD)不敏感纤维。在正常的色散状态下,MI的产生界定在CCD上。从CCD产生两个MI条带,总功率小于临界值,这取决于光纤的线性耦合,色散和非线性系数。没有CCD可以生成MI。反对称CW状态,其中两个侧核中的场具有相反的相反符号的较大幅度,并且中心核心中的场为零,存在于任何功率。对于这种状态,MI特性与等边三芯光纤的MI特性类似。该研究还包括利用波传播仿真的MI分析的直接数值验证。 (c)2017年光学学会

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