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首页> 外文期刊>Journal of Nanophotonics >Composite surface-plasmon-polariton waves guided by a thin metal layer sandwiched between a homogeneous isotropic dielectric material and a periodically multilayered isotropic dielectric material
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Composite surface-plasmon-polariton waves guided by a thin metal layer sandwiched between a homogeneous isotropic dielectric material and a periodically multilayered isotropic dielectric material

机译:由夹在均质各向同性介电材料和周期性多层各向同性介电材料之间的薄金属层引导的复合表面等离子体激元极化波

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摘要

Multiple p- and s-polarized compound surface-plasmon-polariton (SPP) waves at a fixed frequency can be guided by a structure consisting of a metal layer sandwiched between a homogeneous isotropic dielectric (HID) material and a periodic multilayered isotropic dielectric (PMLID) material. For any thickness of the metal layer, at least one compound SPP wave must exist. It possesses the p-polarization state, and is strongly bound to the metal/HID interface when the metal thickness is large but to both metal/dielectric interfaces when the metal thickness is small. When the metal layer vanishes, this compound SPP wave transmutes into a Tamm wave. Additional compound SPP waves exist, depending on the thickness of the metal layer, the relative permittivity of the HID material, and the period and composition of the PMLID material. Some of these are p-polarized, the others are s-polarized. All of them differ in phase speed, attenuation rate, and field profile, even though all are excitable at the same frequency. The multiplicity and dependence of the number of compound SPP waves on the relative permittivity of the HID material when the metal layer is thin could be useful for optical sensing applications and intrachip plasmonic optical communication. (C) 2015 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:固定频率下的多个p极化和s极化复合表面等离子极化(SPP)波可以通过一种结构来引导,该结构由夹在均质各向同性电介质(HID)材料和周期性多层各向同性电介质(PMLID)之间的金属层组成)材料。对于任何厚度的金属层,必须至少存在一个复合SPP波。它具有p极化状态,当金属厚度大时牢固地结合到金属/ HID界面,而当金属厚度小时牢固地结合到两个金属/电介质界面。当金属层消失时,该复合SPP波转变为Tamm波。根据金属层的厚度,HID材料的相对介电常数以及PMLID材料的周期和组成,还会存在其他复合SPP波。其中一些是p极化的,其他是s极化的。尽管它们都可以在相同的频率下激发,但是它们的相位速度,衰减率和场分布都不同。当金属层较薄时,复合SPP波数与HID材料相对介电常数的相关性和多样性可能对光学传感应用和芯片内等离激元光通信有用。 (C)2015年光电仪器工程师协会(SPIE)

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