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Inhibition of light tunneling for multichannel excitations in longitudinally modulated waveguide arrays

机译:在纵向调制波导阵列中抑制多通道激发的光隧穿

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We consider the evolution of multichannel excitations in longitudinally modulated waveguide arrays where the refractive index either oscillates out-of-phase in all neighboring waveguides or when it is modulated in phase in several central waveguides surrounded by out-of-phase oscillating neighbors. Both types of modulations allow resonant inhibition of light tunneling, but only the modulation of the latter type conserves the internal structure of multichannel excitations. We show that parameter regions where light tunneling inhibition is possible depend on the symmetry and structure of multichannel excitations. Antisymmetric multichannel excitations are more robust than their symmetric counterparts and experience nonlinearity-induced delocalization at higher amplitudes.
机译:我们考虑了纵向调制波导阵列中多通道激励的演变,在该阵列中,折射率要么在所有相邻波导中异相振荡,要么在被异相振荡邻居包围的几个中心波导中被同相调制。两种类型的调制都允许共振抑制光隧穿,但是只有后一种类型的调制才能保留多通道激发的内部结构。我们表明,可能发生光隧穿抑制的参数区域取决于多通道激发的对称性和结构。反对称多通道激励比对称激励更加鲁棒,并且在更高的振幅下会发生非线性引起的离域。

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