Peleg Or, Segev Mordechai, Bartal Guy, Christodoulides Demetrios N, Moiseyev Nimrod
Physics Department, Technion - Israel Institute of Technology, Haifa 32000, Israel.
Phys Rev Lett. 2009 Apr 24;102(16):163902. doi: 10.1103/PhysRevLett.102.163902. Epub 2009 Apr 23.
We formulate wave propagation in arrays of subwavelength waveguides with sharp index contrasts and demonstrate the collapse of bands into evanescent modes and lattice solitons with superluminal phase velocity. We find a self-reviving soliton ("phoenix soliton") comprised of coupled forward- and backward-propagating light, originating solely from evanescent bands. In the linear regime, all Bloch waves comprising this beam decay, whereas a proper nonlinearity assembles them into a propagating self-trapped beam. Finally, we simulate the dynamics of such a beam and observe breakup into temporal pulses, indicating a new kind of slow-light gap solitons, trapped in time and in one transverse dimension.
我们阐述了在具有急剧折射率对比度的亚波长波导阵列中的波传播,并展示了能带坍缩为倏逝模式和具有超光速相速度的晶格孤子。我们发现了一种由向前和向后传播的耦合光组成的自复苏孤子(“凤凰孤子”),它仅起源于倏逝能带。在线性 regime 中,构成该光束的所有布洛赫波都会衰减,而适当的非线性将它们组装成一个传播的自陷光束。最后,我们模拟了这种光束的动力学,并观察到它分裂成时间脉冲,这表明存在一种新型的慢光间隙孤子,它在时间和一个横向维度上被捕获。