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Properties of phase-coherent energy shuttling on the nanoscale

机译:相干能量穿梭在纳米尺度上的性质

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Recently, the possibility of transporting electromagnetic energy as local-plasmon-polariton waves along arrays of silver nanoparticles was demonstrated experimentally [S. A. Maier , Nat. Mater. 2, 229 (2003)]. It was shown that dipole coupling facilitates phase-coherent excitation waves, which propagate while competing against decoherence effects occurring within each dot. In this article the authors study the ideal coherent shuttling in such a system, leaving decoherence for future investigation. In the weak field limit, the waves obey a Schrodinger equation, to be solved using either time-dependent wave-packet or energy resolved scattering techniques. The authors study some dynamical characteristics of these waves, emphasizing intuition and insight. Scattering from barriers, longitudinal-transverse coupling and acceleration methods are studied in detail. The authors also discuss briefly two-dimensional arrays and a simple decoherence model.
机译:最近,实验证明了沿着银纳米颗粒阵列将电磁能作为局部等离振子-极化波传输的可能性[S.纳特(N.母校2,229(2003)]。结果表明,偶极耦合促进了相干激励波的传播,同时与每个点内发生的去相干效应竞争。在本文中,作者研究了这种系统中理想的相干穿梭,并为以后的研究留了退相干。在弱场极限中,波服从薛定inger方程,需要使用时变波包或能量解析散射技术来求解。作者研究了这些波动的一些动力学特征,强调了直觉和洞察力。对障碍物的散射,纵向-横向耦合和加速方法进行了详细研究。作者还简要讨论了二维阵列和简单的退相干模型。

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