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Implementation of a subwavelength Bragg reflector for Terahertz applications

机译:用于太赫兹应用的亚波长布拉格反射器的实现

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摘要

In recent years, the usage of the Terahertz (THz) portion of the electromagnetic spectrum has been investigated in the field of communications, medicine and biology. The evaluation of the THz wave performance in the applications requires supportive THz based devices such as emitter, detectors and filters. The efficient integration of the THz devices with the state of the art silicon based devices is limited by its typical diffraction limit (millimeters). In this abstract, a subwavelength Surface Plasmon Polaritons (SPPs) based Bragg reflector is using Indium antimonide (InSb), Silicon-dioxide (SiO2) and Porous-SiO2, is proposed. The SPPs based wave propagation at THz allows the nanoscale realization of the THz based devices. The proposed plasmonic Bragg reflector utilizes the periodic changes of the dielectric material in the core layer, while InSb is used in the cladding layer. Finite Element Method (FEM) based simulations are used to demonstrate the working of the proposed subwavelength Bragg reflector.
机译:近年来,在通信,医学和生物学领域已经研究了电磁频谱的太赫兹(THz)部分的使用。在应用中评估太赫兹波性能需要基于支持太赫兹的设备,例如发射器,检测器和滤波器。太赫兹器件与现有硅器件的有效集成受到其典型衍射极限(毫米)的限制。在此摘要中,提出了一种基于亚波长表面等离子极化子(SPPs)的布拉格反射器,该反射器使用了锑化铟(InSb),二氧化硅(SiO2)和多孔SiO2。在THz处基于SPP的波传播允许以纳米级实现基于THz的设备。提出的等离子布拉格反射器利用芯层中介电材料的周期性变化,而包层中使用InSb。基于有限元方法(FEM)的模拟用于演示所提出的亚波长布拉格反射器的工作。

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