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Parity-time symmetric coupler in transverse periodic and aperiodic potentials

机译:横向周期性和非周期性潜力的奇偶校验时间对称耦合器

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摘要

The dynamics of the parity-time (PT) symmetric coupler in the presence of transverse periodic and aperiodic potentials have been studied for linear and nonlinear regime. The propagation-invariant solutions of the system have been studied and found that the high-frequency and the low-frequency solitons reside in the minimum of the periodic and aperiodic potentials. The amplitude of the low-frequency mode is greater than that of the high-frequency mode. The high strength of the periodic potential causes the soliton to be more confined in the lattice whereas high depth of the parabolic potential leads to the confinement of the soliton at minimum of the potential. The linear coupler possesses real eigenvalues when the gain/loss coefficient is less than the coupling coefficient for both periodic and aperiodic potentials. The transverse periodic potential modulates the amplitude of the beam and causes the formation of bands in the unbroken regime. The intensity of the beam is trapped in the channel with gain in the case of periodic and aperiodic potentials for nonlinear coupler. When the center of the soliton is initially at minimum of transverse potentials, velocity of the soliton increases. If the center of the soliton is initially at maximum of the periodic potential, it moves with uniform velocity. The linear stability analysis reveals that the high- frequency soliton is stable for both periodic and aperiodic potentials whereas the low-frequency soliton is unstable.
机译:已经研究了横向周期性和非周期性电位存在下的奇偶校正时间(PT)对称耦合器的动态,用于线性和非线性状态。已经研究了系统的传播不变解,发现高频和低频孤子在周期性和非周期性电位的最小值中存在。低频模式的幅度大于高频模式的幅度。周期性潜在的高强度导致孤子在晶格中更狭窄,而高深的抛物线潜力导致孤子的限制最小。当增益/损耗系数小于周期性和非周期性电位的耦合系数小时,线性耦合器具有真正的特征值。横向周期性电位调制光束的幅度并导致在不间断的制度中形成带的频带。在非线性耦合器的周期性和非周期性电位的情况下,光束的强度被捕获在通道中。当孤子中心最初的横向电位最小时,孤子的速度增加。如果孤子的中心最初是最大的周期性电位,则它以均匀的速度移动。线性稳定性分析表明,高频孤子对于周期性和非周期性电位稳定,而低频孤子是不稳定的。

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