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随机相位晶格孤子的观测

Observation of random-phase lattice solitons.

作者信息

Cohen Oren, Bartal Guy, Buljan Hrvoje, Carmon Tal, Fleischer Jason W, Segev Mordechai, Christodoulides Demetrios N

机构信息

Physics Department and Solid State Institute, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Nature. 2005 Feb 3;433(7025):500-3. doi: 10.1038/nature03267.

Abstract

The coherence of waves in periodic systems (lattices) is crucial to their dynamics, as interference effects, such as Bragg reflections, largely determine their propagation. Whereas linear systems allow superposition, nonlinearity introduces a non-trivial interplay between localization effects, coupling between lattice sites, and incoherence. Until recently, all research on solitary waves (solitons) in nonlinear lattices has involved only coherent waves. In such cases, linear dispersion or diffraction of wave packets can be balanced by nonlinear effects, resulting in coherent lattice (or 'discrete') solitons; these have been studied in many branches of science. However, in most natural systems, waves with only partial coherence are more common, because fluctuations (thermal, quantum or some other) can reduce the correlation length to a distance comparable to the lattice spacing. Such systems should support random-phase lattice solitons displaying distinct features. Here we report the experimental observation of random-phase lattice solitons, demonstrating their self-trapping and local periodicity in real space, in addition to their multi-peaked power spectrum in momentum space. We discuss the relevance of such solitons to other nonlinear periodic systems in which fluctuating waves propagate, such as atomic systems, plasmas and molecular chains.

摘要

周期性系统(晶格)中波的相干性对其动力学至关重要,因为诸如布拉格反射等干涉效应在很大程度上决定了它们的传播。线性系统允许叠加,而非线性则在局域化效应、晶格位点之间的耦合以及非相干性之间引入了一种不平凡的相互作用。直到最近,关于非线性晶格中孤立波(孤子)的所有研究都仅涉及相干波。在这种情况下,波包的线性色散或衍射可以由非线性效应平衡,从而产生相干晶格(或“离散”)孤子;这些孤子已在许多科学分支中得到研究。然而,在大多数自然系统中,只有部分相干的波更为常见,因为涨落(热涨落、量子涨落或其他某种涨落)会将关联长度减小到与晶格间距相当的距离。这样的系统应该支持呈现出独特特征的随机相位晶格孤子。在此,我们报告了随机相位晶格孤子的实验观测结果,展示了它们在实空间中的自陷和局部周期性,以及在动量空间中的多峰功率谱。我们讨论了此类孤子与其他波动传播的非线性周期性系统的相关性,例如原子系统、等离子体和分子链。

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