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首页> 外文期刊>Journal of optics >On-chip broadband ultra-compact optical couplers and polarization splitters based on off-centered and non-symmetric slotted Siwire waveguides
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On-chip broadband ultra-compact optical couplers and polarization splitters based on off-centered and non-symmetric slotted Siwire waveguides

机译:基于偏心和不对称开槽的Siwire波导的片上宽带超紧凑光耦合器和偏振分离器

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摘要

In this work, we propose novel schemes to design on-chip ultra-compact optical directional couplers (DC) and broadband polarization beam splitters (PBS) based on off-centered and asymmetric dielectric slot waveguides, respectively. Slot dimensions and positions are optimized to achieve maximum coupling coefficients between two symmetric and non-symmetric slotted Si wire waveguides through overlap integral method. We observe >88% of enhancement in the coupling coefficients when the size-optimized slots are placed in optimal positions, with respect to the same waveguides with no slot. When the waveguides are parallel, in that case, a coupling length as short as 1.73 mu m is accomplished for TM mode with the off-centered and optimized slots. This scheme enables us to design optical DC with very small footprint, L-c similar to 0.9 mu m in the presence of S-bends. We also report a compact (L-c similar to 1.1 mu m) on-chip broadband PBS with hybrid slots. Extinction ratios of 13 dB and 22.3 dB are realized with very low insertion loss (0.055 dB and 0.008 dB) for TM and TE modes at 1.55 mu m, respectively. The designed PBS exhibits a bandwidth of 78 nm for the TM mode (C-and partial L-bands) and >100 nm for the TE mode (S + C + L wavelength bands). Such on-chip devices can be used to design compact photonic interconnects and quantum information processing units efficiently. We have also investigated the fabrication tolerances of the proposed devices and described the fabrication steps to realize such hybrid devices. Our results are in good agreement with 3D FDTD simulations.
机译:在这项工作中,我们提出了新颖的方案,分别基于偏心和非对称介质缝隙波导来设计芯片上超紧凑型光定向耦合器(DC)和宽带偏振分束器(PBS)。通过重叠积分法优化了缝隙的尺寸和位置,以实现两个对称和不对称的缝隙Si线波导之间的最大耦合系数。对于没有狭缝的相同波导,将尺寸优化的狭缝放置在最佳位置时,我们观察到耦合系数增强> 88%。在这种情况下,当波导平行时,对于TM模式,具有偏心和优化的缝隙,可以实现短于1.73μm的耦合长度。该方案使我们能够设计出具有很小占用空间的光学DC,在存在S形弯曲的情况下,L-c类似于0.9微米。我们还报告了一种带有混合插槽的紧凑型宽带宽带PBS(L-c类似于1.1微米)。在1.55μm的TM和TE模式下,实现的消光比分别为13 dB和22.3 dB,插入损耗非常低(0.055 dB和0.008 dB)。设计的PBS在TM模式(C和部分L波段)的带宽为78 nm,在TE模式(S + C + L波段)的带宽为> 100 nm。这种片上设备可用于有效地设计紧凑的光子互连和量子信息处理单元。我们还研究了所提出装置的制造公差,并描述了实现这种混合装置的制造步骤。我们的结果与3D FDTD仿真非常吻合。

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