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首页> 外文期刊>Physical Review X >Topological Photonic Quasicrystals: Fractal Topological Spectrum and Protected Transport
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Topological Photonic Quasicrystals: Fractal Topological Spectrum and Protected Transport

机译:拓扑光子拟类 - 分形拓扑谱和保护运输

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We show that it is possible to have a topological phase in two-dimensional quasicrystals without any magnetic field applied, but instead introducing an artificial gauge field via dynamic modulation. This topological quasicrystal exhibits scatter-free unidirectional edge states that are extended along the system’s perimeter, contrary to the states of an ordinary quasicrystal system, which are characterized by power-law decay. We find that the spectrum of this Floquet topological quasicrystal exhibits a rich fractal (self-similar) structure of topological “minigaps,” manifesting an entirely new phenomenon: fractal topological systems. These topological minigaps form only when the system size is sufficiently large because their gapless edge states penetrate deep into the bulk. Hence, the topological structure emerges as a function of the system size, contrary to periodic systems where the topological phase can be completely characterized by the unit cell. We demonstrate the existence of this topological phase both by using a topological index (Bott index) and by studying the unidirectional transport of the gapless edge states and its robustness in the presence of defects. Our specific model is a Penrose lattice of helical optical waveguides—a photonic Floquet quasicrystal; however, we expect this new topological quasicrystal phase to be universal.
机译:我们表明,在没有施加任何磁场的情况下,可以在二维拟型桥形中具有拓扑相位,而是通过动态调制引入人工计域。这种拓扑拟替代术呈现出沿着系统的周边延伸的无散射单向边缘状态,与普通的拟类系统的状态相反,其特征在于幂律衰减。我们发现该浮子拓扑拟raticstal的光谱表现出富含拓扑“Minigaps”的分形(自相似)结构,表现出完全新的现象:分形拓扑系统。这些拓扑Minigaps仅在系统尺寸足够大的情况下形成,因为它们的无效边缘状态渗透到散装中。因此,拓扑结构作为系统尺寸的函数出现,与拓扑阶段可以完全特征的周期性系统相反。我们通过使用拓扑指数(BOT指数)和通过研究无间隙状态的单向传输及其在存在缺陷的情况下,证明了这种拓扑阶段的存在。我们的特定模型是螺旋光波导的Penrose格 - 光子浮子拟rδ;但是,我们预计这一新的拓扑拟CASICSTAL阶段是普遍的。

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