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Nonlinear nanoscale localization of magnetic excitations in atomic lattices [Review]

机译:原子晶格中磁激发的非线性纳米尺度局部化[综述]

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Reviewed here is the nonlinear intrinsic localization expected for large amplitude spin waves in a variety of magnetically ordered lattices. Both static and dynamic properties of intrinsic localized spin wave gap modes and resonant modes are surveyed in detail. The modulational instability of extended nonlinear spin waves is discussed as a mechanism for dynamical localization of spin waves in homogeneous magnetic lattices. The interest in this particular nonlinear dynamics area stems from the realization that some localized vibrations in perfectly periodic but nonintegrable lattices can be stabilized by lattice discreteness. However, in this rapidly growing area in nonlinear condensed matter research the experimental identification of intrinsic localized modes is yet to be demonstrated. To this end the study of spin lattice models has definite advantages over those previously presented for vibrational models both because of the importance of intrasite and intersite nonlinear interaction terms and because the dissipation of spin waves in magnetic materials is weak compared to that of lattice vibrations in crystals. Thus, both from the theoretical and the experimental points of view, nonlinear magnetic systems may provide more tractable candidates for the investigation of intrinsic localized modes which display nanoscale dimensions as well as for the future exploration of the quantum properties of such excitations. (C) 1999 Elsevier Science B.V. All rights reserved. [References: 107]
机译:这里回顾的是各种磁有序晶格中大振幅自旋波的非线性固有局域性。详细研究了固有局部自旋波隙模式和共振模式的静态和动态特性。讨论了扩展非线性自旋波的调制不稳定性,作为自旋波在均匀磁晶格中动态定位的一种机制。对这个特定的非线性动力学领域的兴趣来自于这样的认识,即,理想的周期性但不可积分的晶格中的某些局部振动可以通过晶格离散来稳定。但是,在这个非线性凝结物质研究迅速发展的领域,内在局域模态的实验识别还有待证明。为此目的,自旋晶格模型的研究相对于先前针对振动模型的研究具有明显的优势,这既是因为场内和场间非线性相互作用项的重要性,又是因为自旋波在磁性材料中的耗散比晶格振动要弱。晶体。因此,从理论和实验的角度来看,非线性磁系统都可以为研究显示纳米级尺寸的本征局部模式以及将来对这种激发的量子性质的探索提供更容易处理的候选对象。 (C)1999 Elsevier Science B.V.保留所有权利。 [参考:107]

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