首页> 外文OA文献 >COUPLING AND PROPAGATION OF SURFACE PLASMONS IN THE FAR-INFRARED (NEAR-MILLIMETER WAVES, SUB-MILLIMETER WAVES).
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COUPLING AND PROPAGATION OF SURFACE PLASMONS IN THE FAR-INFRARED (NEAR-MILLIMETER WAVES, SUB-MILLIMETER WAVES).

机译:远红外(近毫米波,次毫米波)中表面等离子体的耦合和传播。

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摘要

This work describes a study of the propagation properties of a modified surface plasmon mode, and of the coupling properties of that mode using a grating coupler. The surface plasmon, a polariton involving coupling of electromagnetic waves to the plasma oscillations of a metal, is modified by the application of a dielectric overlayer to the interface between the metal and air. In the far infrared region of the electromagnetic spectrum, the overlayer causes dramatic changes in several properties of the mode, which can be verified by measuring the propagation length of the mode. Measurements at a wavelength of 118.8 μm of the propagation length as a function of the thickness of a polycrystalline silicon overlayer on silver showed that the mode has the expected properties. They also indicated that the Drude model of the dielectric function of the silver is valid at 118.8 μm, even when using established Drude parameters, which are based on measurements in the visible and near infrared region of the electromagnetic spectrum. The coupling study measured the fundamental coupling parameters, also at a wavelength of 118.8 μm, for coupling via a grating between free-space waves and the surface plasmon, and measured the effect of the overlayer on these parameters. Efficient coupling was achieved, but a theoretical treatment of the coupling system proved to be beyond the scope of first-order grating-coupler theory. This was true despite the fact that the grating amplitude was a small fraction of the wavelength, a common criterion for the application of such a theory. Several possible reasons for the breakdown of the theory were considered, but definite answers require additional experiments. The most prominent possibilities are the shape factor, and the depth of the grating compared to the penetration depth of the fields into the metal. Though not all the data is completely explained, the studies herein demonstrate that the overlayer eliminates many of the deficiencies which limit the generation and control of far-infrared surface plasmons.
机译:这项工作描述了对改进的表面等离子体激元模式的传播特性以及使用光栅耦合器的该模式的耦合特性的研究。表面等离子体激元是一种将电磁波耦合到金属的等离子体振荡中的极化子,它是通过在金属与空气之间的界面上施加介电层来进行修饰的。在电磁频谱的远红外区域中,覆盖层会导致模式的多种属性发生剧烈变化,可以通过测量模式的传播长度来验证这一点。在传播长度的118.8μm波长处的测量结果是银上多晶硅覆盖层厚度的函数,表明该模式具有预期的特性。他们还指出,即使使用既定的Drude参数(基于电磁光谱的可见光和近红外区域中的测量值),银介电功能的Drude模型也适用于118.8μm。耦合研究测量了同样在118.8μm波长处通过光栅在自由空间波和表面等离激元之间耦合的基本耦合参数,并测量了覆盖层对这些参数的影响。虽然实现了有效的耦合,但是事实证明耦合系统的理论处理超出了一阶光栅耦合器理论的范围。尽管光栅幅度只是波长的一小部分,这是正确的,但这是应用该理论的通用标准。考虑了破坏该理论的几种可能原因,但是要确定答案,还需要进行其他实验。最显着的可能性是形状因数,以及光栅的深度(与磁场进入金属的深度相比)。尽管并非所有数据都得到完整解释,但本文的研究表明,覆盖层消除了许多缺陷,这些缺陷限制了远红外表面等离子体激元的产生和控制。

著录项

  • 作者

    STEIJN KIRK WILLIAM.;

  • 作者单位
  • 年度 1986
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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