Campione Salvatore, Steshenko Sergiy, Albani Matteo, Capolino Filippo
Department of Electrical Engineering and Computer Science, University of California, Irvine, California 92697, USA.
Opt Express. 2011 Dec 19;19(27):26027-43. doi: 10.1364/OE.19.026027.
We characterize the modes with complex wavenumber for both longitudinal and transverse polarization states (with respect to the mode traveling direction) in three dimensional (3D) periodic arrays of plasmonic nanospheres, including metal losses. The Ewald representation of the required dyadic periodic Green's function to represent the field in 3D periodic arrays is derived from the scalar case, which can be analytically continued into the complex wavenumber space. We observe the presence of one longitudinal mode and two transverse modes, one forward and one backward. Despite the presence of two modes for transverse polarization, we notice that the forward one is "dominant" (i.e., it contributes most to the field in the array). Therefore, in case of transverse polarization, we describe the composite material in terms of a homogenized effective refractive index, comparing results from (i) modal analysis, (ii) Maxwell Garnett theory, (iii) Nicolson-Ross-Weir retrieval method from scattering parameters for finite thickness structures (considering different thicknesses, showing consistency of results), and (iv) the fitting of the fields obtained through HFSS simulations. The agreement among the different methods justifies the performed homogenization procedure in case of transverse polarization.
我们表征了三维(3D)等离子体纳米球周期阵列中纵向和横向极化状态(相对于模式传播方向)具有复波数的模式,其中包括金属损耗。用于表示3D周期阵列中场的所需并矢周期格林函数的埃瓦尔德表示法是从标量情况推导出来的,它可以解析延拓到复波数空间。我们观察到存在一个纵向模式和两个横向模式,一个向前和一个向后。尽管横向极化存在两个模式,但我们注意到向前的那个模式是“主导”的(即,它对阵列中的场贡献最大)。因此,在横向极化的情况下,我们根据均匀化有效折射率来描述复合材料,比较了以下结果:(i)模态分析,(ii)麦克斯韦·加内特理论,(iii)用于有限厚度结构散射参数的尼科尔森 - 罗斯 - 韦尔反演方法(考虑不同厚度,结果显示一致性),以及(iv)通过HFSS模拟获得的场的拟合。不同方法之间的一致性证明了在横向极化情况下所执行的均匀化过程的合理性。