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Localization in a synthetic photonic lattice with varying coupling ratio

机译:具有不同耦合比的合成光子晶格的定位

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A synthetic photonic lattice (SPL) is a suitable test-bed to study dynamics of one-dimensional photonic mesh lattices. Unlike other realizations of photonic lattices, SPL possesses easy and fast control of optical potential and lattice parameters. Here we consider disordered synthetic photonic lattice with random variation of coupling ratio between the fiber loops in time. We numerically study dynamics of synthetic photonic mesh lattices with the randomly varying coupling ratio and observe that the pulse train circulating within the loops becomes localized next to the initial pulse position, while amplitude distribution has exponential form consistent with Anderson localization theory.
机译:合成光子晶格(SPL)是一种合适的试验床,用于研究一维光子网格的动态。与光子格子的其他实现不同,SPL容易和快速控制光学电位和晶格参数。在这里,我们考虑了纤维环之间的耦合比随机变化的无序的合成光子晶格。我们用随机变化的耦合比数值研究了合成光子网格格子的动态,并观察到循环内的脉冲系在初始脉冲位置旁边的定位,而幅度分布具有与安德森本地化理论一致的指数形式。

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