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Polarization Evolution of a Vector Optical Field in a PT Symmetry System

机译:PT对称系统中矢量光学场的偏振演变

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The evolution of a vector optical field (VOF) with a spiral phase and azimuthally-variant polarization distributions in the field cross-section in a Parity-Time (PT) symmetric system is demonstrated. The evolutions of the Stokes parameters of azimuthally-variant VOF in PT symmetry system are obtained by the split-step finite-difference method. Numerical results show that the coherent superposition of two orthogonal polarization components leads to the occurrence of the linear-circular polarization conversions in the periphery of the VOF during propagation in a PT symmetric system. Moreover, the optical intensity and the circular polarization components generated by transmission is not uniform during propagation in a PT symmetric system due to the gain and loss effect of PT symmetry. These results provide a new approach for the manipulation of a VOF with different modulation factors (refractive index, gain/loss, and lattice period) at different propagation distances in the PT symmetric system.
机译:一个矢量光场(VOF)的与在奇偶时间(PT)的对称系统中的场横截面的螺旋相和方位角变偏振分布的演变是证明。方位角变VOF在PT系统对称的斯托克斯参数的演变由分步有限差分法获得。数值结果表明,两个正交偏振分量导致在VOF的周边的直线 - 圆偏振转换的发生在PT对称系统传播时的相干叠加。此外,通过传输产生的光强度和所述圆偏振分量不处于PT对称系统传播期间均匀由于PT对称增益和损失的效果。这些结果提供了一个VOF的在PT对称系统的不同传播距离的操纵利用不同的调制因子(折射率,增益/损耗和晶格周期)的新方法。

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