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Embedded air core optical nano-waveguides

机译:嵌入式空芯光学纳米波导

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摘要

We propose a nanometer-scale hollow core waveguide that can be fabricated with standard methods on a silicon-on-insulator substrate. High optical confinement in the core is possible, making such a waveguide structure suitable for sensing applications, applications making use of strong optical nonlinearities, and optofluidics applications. We extend a historical method (Marcatili's method) to provide analytical solutions for field distributions in the device and simulate power confinement, intensity, and parametric dependencies with beam propagation and finite-difference time-domain methods for two polarizations. In an example worked out, the optical confinement in the air core is ?40% of the total waveguide power, which is favorable to that of a standard slot waveguide. The intensity per μm~2 in the hollow core is 95% higher than in the silicon cladding region, indicating that avoiding optical nonlinearities is also possible.
机译:我们提出了一种纳米尺度的空心波导,可以用绝缘子上的硅衬底上的标准方法制造。纤芯中的光学限制可能很高,从而使这种波导结构适合于传感应用,利用强光学非线性的应用以及光流体应用。我们扩展了一种历史方法(Marcatili方法),为设备中的场分布提供了解析解决方案,并通过光束传播和两种偏振的时域有限差分时域方法来模拟功率限制,强度和参数依赖性。在一个示例中,空芯中的光学限制为总波导功率的40%,这比标准缝隙波导的光功率有利。中空芯的每μm〜2强度比硅包层区域高95%,这表明避免光学非线性也是可能的。

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