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Numerical simulation of low loss silicon photonic wire waveguide with multiple cladding layers

机译:多层复合低损耗硅光子线波导的数值模拟

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摘要

A different silicon photonic wire waveguide is proposed, which uses multiple thin cladding layers in order to reduce the index contrast between core and cladding interface. The reduced index contrast in the proposed waveguide has led to reduction in the scattering losses by 37% as compared to silicon wire waveguide for 400 nm × 220 nm waveguide dimension. The proposed waveguide has shown significant reduction in bending losses. It offers the bending loss of 0.0118 dB at the radius of 1 nm and 0.0063 dB for a radius of 2 urn at 1.55 um wavelength as compared to 0.086 and 0.013 dB at the radius of 1 and 2 urn, respectively, offered by silicon photonic wire waveguide at 1.5 um wavelength. The use of polymer material as top cladding layer resulted in decreasing the sensitivity of effective index against temperature for the designed waveguide by a factor of 2 as compared to silicon wire waveguide.
机译:提出了一种不同的硅光子线波导,该波导使用多个薄包层,以减小纤芯和包层界面之间的折射率对比。与400毫米×220纳米波导尺寸的硅线波导相比,所提出的波导中折射率对比度的降低已导致散射损耗降低了37%。所提出的波导已经显示出弯曲损耗的显着降低。它在1.55 um波长处的半径为2 um时,在1 nm半径处的弯曲损耗为0.0118 dB,在2 um半径下为0.0063 dB,而硅光子线分别在1和2 um半径处提供0.086和0.013 dB。波长为1.5 um的波导。与硅线波导相比,使用聚合物材料作为顶部包层导致设计波导的有效折射率对温度的灵敏度降低了2倍。

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