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Infrared Surface Phonon Polariton Waveguides on SiC Substrate

机译:SiC衬底上的红外表面声子极化波导

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Surface plasmon polariton (SPP) waveguides harbor many potential applications at visible and near-infrared (NIR) wavelengths. However, dispersive properties of the metal in the waveguide yields weakly coupled and lossy plasmonic modes in the mid and long wave infrared range. This is one of the major reasons for the rise in popularity of surface phonon polariton (SPhP) waveguides in recent research and micro-fabrication pursuit. Silicon carbide (SiC) is a good candidate in SPhP waveguides since it has negative dielectric permittivity in the long-wave infrared (LWIR) spectral region, indicative that coupling to surface phonon polaritons is realizable. Introducing surface phonon polaritons for waveguiding provides good modal confinement and enhanced propagation length. A hybrid waveguide structure at long-wave infrared (LWIR) is demonstrated in which an eigenmode solver approach in Ansys HFSS was applied. The effect of a three layer configuration i.e., silicon wire on a benzocyclobutene (BCB) dielectric slab on SiC, and the effects of varying their dimensions on the modal field distribution and on the propagation length, is presented.
机译:表面等离子体激元(SPP)波导在可见光和近红外(NIR)波长具有许多潜在的应用。但是,金属在波导中的分散特性会在中波和长波红外范围内产生弱耦合和有损的等离子体模式。这是在最近的研究和微加工中表面声子极化(SPhP)波导日益普及的主要原因之一。碳化硅(SiC)在SPhP波导中是一种很好的选择,因为它在长波红外(LWIR)光谱区域中具有负介电常数,这表明可以实现与表面声子极化子的耦合。用于波导的表面声​​子极化子的引入提供了良好的模态限制和增强的传播长度。演示了在长波红外(LWIR)的混合波导结构,其中应用了Ansys HFSS中的本征模求解器方法。提出了三层结构的影响,即硅线在SiC上的苯并环丁烯(BCB)介电平板上的影响,以及改变其尺寸对模态场分布和传播长度的影响。

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