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Scattering matrix approach to the resonant states and Q values of microdisk lasing cavities

机译:散射矩阵法研究微盘激光腔的共振态和Q值

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摘要

We develop a scattering matrix approach for the numerical calculation of resonant states and Q values of a nonideal optical disk cavity with an arbitrary shape and with an arbitrary varying refraction index. The developed method is applied to study the effect of surface roughness and inhomogeneity of the refraction index on Q values of microdisk cavities for lasing applications. We demonstrate that even small surface roughness (Δrapprox.<λ/50) can lead to a drastic degradation of high-Q cavity modes by many orders of magnitude. The results of the numerical simulation are analyzed and explained in terms of wave reflection at a curved dielectric interface, combined with an examination of Poincare surfaces of section and of Husimi distributions.
机译:我们开发了一种散射矩阵方法,用于对具有任意形状和任意变化折射率的非理想光盘腔的共振态和Q值进行数值计算。将该方法用于研究激光应用中微盘腔Q值的表面粗糙度和折射率的不均匀性。我们证明,即使很小的表面粗糙度(Δrapprox。<λ/ 50)也可能导致高Q腔模急剧下降许多数量级。数值模拟的结果根据弯曲介电界面处的波反射进行了分析和说明,并结合了截面的Poincare表面和Husimi分布进行了检验。

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