首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Simulation of self-organized parallel waveguides targeting nanoscale luminescent objects
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Simulation of self-organized parallel waveguides targeting nanoscale luminescent objects

机译:针对纳米发光对象的自组织平行波导的仿真

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We simulated self-organized parallel waveguides constructed from two parallel input waveguides with a core width of 600 nm in a photopolymer using the finite-difference time-domain method. When write beams of 400 nm in wavelength are introduced from the input waveguides 4 μm apart, straight parallel waveguides are constructed in the photopolymer. When decreasing the distance between the input waveguides, the parallel waveguides attract each other and finally merge. By putting 600 nm wide luminescent objects at the waveguide destinations, self-organized parallel waveguides targeting the objects are constructed to pull them back to the correct destinations. The self-aligned parallel coupling waveguides are constructed even when a misalignment of 900 nm exists between the input waveguides and the luminescent objects. For write beams of 650 nm, the allowed misalignment increases due to increased divergence angles.
机译:我们使用时域有限差分法在光聚合物中模拟了由两个平行输入波导构成的自组织平行波导,其芯宽为600 nm。当从相距4μm的输入波导引入波长为400 nm的写入光束时,在光敏聚合物中会构造成直的平行波导。当减小输入波导之间的距离时,平行波导相互吸引并最终合并。通过在波导目标处放置600 nm宽的发光对象,可以构造针对这些对象的自组织平行波导,以将它们拉回到正确的目标。即使在输入波导和发光物体之间存在900nm的失准,也可以构造自对准的并联耦合波导。对于650 nm的写入光束,由于发散角的增加,允许的失准增加。

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