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Nonlinearity induced topological physics in momentum space and real space

机译:非线性诱导动量空间和真实空间的拓扑物理学

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Nonlinearity induced topological properties in nonlinear lattice systems are studied in both momentum space and real space. Experimentally realizable through the Kerr effect on photonic waveguide systems, our working model depicts onsite nonlinearity added to the Su-Schrieffer-Heeger (SSH) model plus a chiral-symmetry-breaking term. Under the periodic boundary condition, two of the nonlinear energy bands approach the energy bands of the chiral-symmetric SSH model as nonlinearity strength increases. Further, we account for a correction to the Zak phase and obtain a general expression for nonlinear Zak phases. For sufficiently strong nonlinearity. the sum of all nonlinear Zak phases (not the sum of all conventional Zak phases) is found to be quantized. In real space, it is discovered that there is a strong interplay between nonlinear solitons and the topologically protected edge stales of the associated chiral-symmetric linear system. Nonlinearily can recover the degeneracy between two edge soliton states, albeit a chiral-symmetry-breaking term. We also reveal the topological origin of in-gap solitons even when the associated linear system is in the topological trivial regime. These momentum-space and real-space results have clearly demonstrated new topological features induced by nonlinearity, indicating that topological physics in nonlinear lattice systems is far richer than previously thought.
机译:在动量空间和真实空间中研究了非线性诱导的非线性晶格系统中的拓扑特性。通过对光子波导系统的克尔效应进行实验可实现,我们的工作模型描绘了在Su-Schrieffer-Heeger(SSH)模型加上的现场非线性加上手性对称术语。在周期边界条件下,两个非线性能量带接近手性对称SSH模型的能量带,因为非线性强度增加。此外,我们考虑了对ZAK相的校正,并获得非线性ZAK阶段的一般表达。对于足够强烈的非线性。发现所有非线性Zak相的总和(不是所有常规Zak阶段的总和)被定量化。在真实空间中,发现非线性孤子孤子和相关手续线性线性系统的非线性孤子和拓扑保护的边缘术之间存在强烈的相互作用。非线性地可以恢复两个边缘孤独状态之间的退化,尽管是手性对称术语。即使当相关的线性系统处于拓扑琐事状态时,我们也揭示了间隙孤子的拓扑起源。这些动量空间和实时空间结果清楚地表明了非线性引起的新拓扑特征,表明非线性晶格系统中的拓扑物理远远比以前思想更丰富。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第11期|115411.1-115411.15|共15页
  • 作者单位

    Department of Physics National University of Singapore Singapore 117543 Singapore;

    Centre for Engineered Quantum Systems School of Physics University of Sydney Sydney New South Wales 2006 Australia;

    Department of Physics National University of Singapore Singapore 117543 Singapore;

    Department of Physics National University of Singapore Singapore 117543 Singapore;

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