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Optical directional coupler and Mach-Zehnder interferometer enhanced via 4H-SiC phonons

机译:通过4H-SiC声子增强光定向耦合器和Mach-Zehnder干涉仪

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Surface phonon polaritons (SPhPs), similar to it cousin phenomenon surface plasmon polaitons (SPPs), are quasi-neutral particles resulting from light-matter coupling that can provide high modal confinement and long propagation in the mid to long infrared (IR). Mach-Zehnder interferometer (MZI) is a combination of two connected optical directional couplers (ODC). With the use of SPhPs, sub-wavelength feature sizes and modal areas can be achieved and to this end a hybrid SPhP waveguide, where propagation length and modal area can be trade-off, will be employed in the design of an ODC and MZI. This endeavor analyzes and characteristics both an ODC and MZI using commercially available numerical simulation software employing finite element method (FEM). The ODC and MZI are design using a novel SPhP hybrid waveguide design where a 4H-SiC substrate provides the polariton mode. The output ports power and relative phase difference between ports are investigated. SPhP enhanced ODC and MZI has applications including, but not limited to, next-generation ultra-compact photonic integrated circuits and waveguide based IR sensing.
机译:表面声子极化子(SPhPs)与表兄弟现象表面等离激元(SPPs)类似,是由光-质耦合产生的准中性粒子,可以在中长红外(IR)中提供高模态限制和长时间传播。马赫曾德尔干涉仪(MZI)是两个相连的光定向耦合器(ODC)的组合。通过使用SPhP,可以实现亚波长特征尺寸和模态面积,为此,在ODC和MZI的设计中将采用混合SPhP波导,在其中可以权衡传播长度和模态面积。这项工作使用市售的采用有限元方法(FEM)的数值模拟软件对ODC和MZI进行了分析和特征分析。 ODC和MZI使用新颖的SPhP混合波导设计进行设计,其中4H-SiC衬底提供极化模式。研究了输出端口的功率和端口之间的相对相位差。 SPhP增强型ODC和MZI的应用包括但不限于下一代超紧凑型光子集成电路和基于波导的IR感应。

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