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Finite size effects on the electromagnetic field enhancement from low-dimensional silver nanoshell dimer arrays

机译:有限尺寸对低维银纳米壳二聚体阵列对电磁场增强的影响

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摘要

Finite size effects on the optical properties of one-dimensional (1D) and two-dimensional (2D) nanoshell dimer arrays are investigated using generalized Mie theory and coupled dipole approximation within the context of surface-enhanced Raman spectroscopy (SERS). It is shown that the huge enhancement in the electromagnetic (EM) field at the center of a given dimer oscillates with the length of the 1D array. For an array of fixed length, the EM enhancement also oscillates along the array, but with a different period. Both types of oscillations can be attributed to the interference of the dynamic dipole fields from different dimers in the array. When generalized to 2D arrays, EM enhancement higher than that of the 1D arrays can be gained with a constant magnitude, a salient feature advantageous to experimental realization of single-molecule SERS.
机译:在表面增强拉曼光谱(SERS)的背景下,使用广义Mie理论和耦合偶极近似研究了尺寸大小对一维(1D)和二维(2D)纳米壳二聚体阵列光学特性的影响。结果表明,给定二聚体中心电磁场的巨大增强随一维阵列的长度而振荡。对于固定长度的阵列,EM增强也会沿阵列振荡,但周期不同。两种类型的振荡都可以归因于来自阵列中不同二聚体的动态偶极子场的干扰。当推广到2D阵列时,可以以恒定的幅度获得比1D阵列更高的EM增强,这是有利于实验实现单分子SERS的显着特征。

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