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Roundtrip matrix method for calculating the leaky resonant modes of open nanophotonic structures

机译:用于计算开放式纳米光子结构的漏泄谐振模式的往返矩阵法

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摘要

We present a numerical method for calculating quasi-normal modes of open nanophotonic structures. The method is based on scattering matrices and a unity eigenvalue of the roundtrip matrix of an internal cavity, and we develop it in detail with electromagnetic fields expanded on Bloch modes of periodic structures. This procedure is simpler to implement numerically and more intuitive than previous scattering matrix methods, and any routine based on scattering matrices can benefit from the method. We demonstrate the calculation of quasi-normal modes for two-dimensional photonic crystals where cavities are side-coupled and in-line-coupled to an infinite W1 waveguide and show that the scattering spectrum of these types of cavities can be reconstructed from the complex quasi-normal mode frequency.
机译:我们提出了一种数值方法来计算开放纳米光子结构的准法向模式。该方法基于散射矩阵和内部空腔往返矩阵的单位特征值,并通过在周期性结构的Bloch模上扩展的电磁场来详细开发该方法。与以前的散射矩阵方法相比,此过程在数值上更易于实现,并且更直观,并且任何基于散射矩阵的例程都可以从该方法中受益。我们演示了二维光子晶体的准法则模式的计算,其中腔是侧向耦合并成行耦合到无限W1波导的,并且表明可以从复杂的准场重构这些类型的腔的散射光谱-正常模式频率。

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