首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Design of high-Q polystyrene nonlinear cavity for ultrafast all-optical switching in mid-infrared photonic crystal slabs with cavity-waveguide structure
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Design of high-Q polystyrene nonlinear cavity for ultrafast all-optical switching in mid-infrared photonic crystal slabs with cavity-waveguide structure

机译:具有腔波导结构的中红外光子晶体平板中超快全光切换的高Q值聚苯乙烯非线性腔的设计

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In this study, we design a nonlinear cavity with ultrafast response speed material in photonic crystal slabs for all-optical switching. We consider triangular lattice photonic crystal slab made from air holes in anisotropic Tellurium background which is on top of Teflon substrate. The cavity itself is then created by enlarging one of the air holes and infiltrating it with polystyrene. Optimization of structural parameters yields a single mode cavity with quality factor of Q = 2.5 × 10~4, by using the three-dimensional finite-difference time-domain (FDTD) simulation and filter diagonalization approach. This shows great enhancement compared with previous studies in which organic polymer materials have been used. In order to study the coupling characteristic of cavity mode and waveguides, the nonlinear cavity is placed between two waveguides, symmetrically. At the end, we used the FDTD method to investigate shift magnitude of cavity mode resonance frequency under pump light. The designed structure can be helpful to achieve extremely fast response speed in all-optical switching devices with high efficiency in the mid-infrared wavelength range.
机译:在这项研究中,我们在光子晶体平板中设计了具有超快响应速度材料的非线性腔,用于全光开关。我们考虑由特氟龙衬底顶部的各向异性碲背景中的气孔制成的三角晶格光子晶体平板。然后,通过扩大空气孔之一并用聚苯乙烯渗透来创建空腔。通过使用三维有限差分时域(FDTD)模拟和滤波器对角化方法,结构参数的优化产生了质量因子Q = 2.5×10〜4的单模腔。与使用有机聚合物材料的先前研究相比,这显示出极大的增强。为了研究腔模和波导的耦合特性,将非线性腔对称地放置在两个波导之间。最后,我们使用FDTD方法研究了泵浦光下腔模共振频率的偏移幅度。设计的结构有助于在中红外波长范围内以高效率在全光开关设备中实现极快的响应速度。

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