Gap solitons and soliton trains in finite-sized two-dimensional periodic and quasiperiodic photonic crystals

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Abstract

We demonstrate the existence of the gap solitons and soliton trains in finite-sized two-dimensional periodic nonlinear photonic crystals by using the mutiple-scattering approach with an iterative scheme. In 12-fold symmetric nonlinear quasicrystals, we also demonstrated the existence of symmetric, regular gap solitons, asymmetric single-soliton states, and two-solitons states. We revealed that the existence of symmetric, regular gap solitons in a 12-fold quasicrystal is limited by the geometrical size of the hexagon that forms the core of the dodecahedral cell, which is the building block of the quasicrystal. © 2003 The American Physical Society.

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Xie, P., Zhang, Z. Q., & Zhang, X. (2003). Gap solitons and soliton trains in finite-sized two-dimensional periodic and quasiperiodic photonic crystals. Physical Review E - Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics, 67(2), 5. https://doi.org/10.1103/PhysRevE.67.026607

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