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Mode analysis for metal-coated nanocavity by three-dimensional S-matrix method

机译:三维S矩阵法分析金属包覆纳米腔的模态

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摘要

Three-dimensional scattering matrix method is proposed to investigate mode characteristics for metal-coated nanocavities, with the vertical waveguide structure of an active region confined by upper and lower cladding layers. For a nanocavity with radius of 800 nm, Q factors of well-confined modes with wavelength around 1550 nm first decrease with the increase of the metallic layer thickness due to the metallic absorption and the increase of radiation loss as the metallic layer thickness is less than 10 nm, and then rise with the increase of the metallic layer. However, for a weak confined nanocavity with a radius of 500 nm, the mode Q factor increases with the metallic layer thickness first, reaches a maximum value at an optimal metallic thickness, then decrease with the further increase of the metallic layer. For nanocavities confined by a thick metallic layer, the Q factors approach constants limited by the metallic absorption. However, mode field patterns, including the vertical field distributions, are affected by the metallic layer, which not only influences the metallic layer absorption but also the optical confinement factor in the active region.
机译:提出了一种三维散射矩阵方法,以研究金属涂层的纳米腔的模式特性,其中有源区的垂直波导结构受上下包层的限制。对于半径为800 nm的纳米腔,波长为1550 nm左右的有限模态的Q因子随着金属层厚度的增加而首先减小,这是由于金属吸收以及辐射损耗的增加所致,因为金属层厚度小于10 nm,然后随着金属层的增加而上升。但是,对于半径为500 nm的有限的受限纳米腔,模式Q因子首先随金属层厚度的增加而增加,在最佳金属厚度时达到最大值,然后随着金属层的进一步增加而减小。对于由厚金属层限制的纳米腔,Q因子接近受金属吸收限制的常数。但是,包括垂直场分布在内的模式场图形受到金属层的影响,这不仅影响金属层的吸收,而且影响有源区中的光学限制因子。

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