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Experimental and numerical exploration of intrinsic localized modes in an atomic lattice

机译:原子晶格内在局域模的实验和数值探索

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摘要

This review focuses attention on the experimental studies of intrinsic localized modes (ILMs) produced in driven atomic lattices. Production methods involve the application of modulational instability under carefully controlled conditions. One experimental approach is to drive the atomic lattice far from equilibrium to produce ILMs, the second is to apply a driver of only modest strength but nearby in frequency to a plane wave mode so that a slow transformation from large amplitude standing waves to ILMs takes place. Since, in either case, the number of ILMs produced is small, the experimental observation tool appropriate for this task is four-wave mixing. This nonlinear detection technique makes use of the nonlinearity associated with an ILM to enhance its signal over that produced by the more numerous, but linear, spin waves. The final topic deals with numerical simulations of a nonlinear nanoscale atomic lattice where the new feature is running ILMs.
机译:这篇综述着重于在驱动原子晶格中产生的固有局域模(ILM)的实验研究。生产方法涉及在精心控制的条件下应用调制不稳定性。一种实验方法是使原子晶格远离平衡以产生ILM,第二种方法是将强度仅适度但在频率附近的驱动器应用于平面波模式,以便从大振幅驻波到ILM的缓慢转换发生。由于在两种情况下产生的ILM数量都很小,因此适合此任务的实验观察工具是四波混频。这种非线性检测技术利用与ILM相关的非线性来增强其信号,使其比更多但线性的自旋波产生的信号增强。最后一个主题涉及其中新功能运行ILM的非线性纳米级原子晶格的数值模拟。

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