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Round-Trip Operator Technique Applied for Optical Resonators with Dispersion Elements

机译:往返行程算子技术在具有色散元件的光学谐振器中的应用

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The round-trip operator technique is widely used for disper-sionless optical resonators beginning from pioneering studies of Fox and Li. The resonator modes are determined as eigenfunctions of the round-trip operator and may be calculated by means of numerical linear algebra. Corresponding complex eigenvalues determine the wavelength shifts relative to reference value and threshold gains. Dispersion elements, for example, Bragg mirrors in a vertical cavity surface emitting laser (VCSEL) cause a dependence of the propagation operator on the wavelength and threshold gain. We can determine the round-trip operator in this case also, but the unknown values of the wavelength and threshold gain enter into the operator in a complicated manner. Trial-and-error method for determination of the wavelength shifts and the threshold gains is possible but it is rather time consuming method. The proposed approximate numerical method for calculation of resonator modes is based on the solution of linear eigenvalue problem for the round-trip operator with reference wavelength and zero attenuation. The wavelength shifts and threshold gains can be calculated by simple formulae using the eigenvalues obtained and the computed effective length of the resonator. Calculations for a cylindrical antiresonant-reflecting optical waveguide (ARROW) VCSEL are performed for verification of the model.
机译:从Fox和Li的开创性研究开始,往返算子技术被广泛用于无色散光谐振器。谐振器模式被确定为往返算子的本征函数,并且可以借助于数值线性代数来计算。对应的复特征值确定相对于参考值和阈值增益的波长偏移。色散元件(例如,垂直腔表面发射激光器(VCSEL)中的布拉格镜)会导致传播算子对波长和阈值增益的依赖性。在这种情况下,我们也可以确定往返算子,但是波长和阈值增益的未知值会以复杂的方式进入算子。确定波长偏移和阈值增益的试错法是可能的,但这是相当耗时的方法。所提出的用于计算谐振器模式的近似数值方法是基于具有参考波长和零衰减的往返算子的线性特征值问题的解决方案。波长偏移和阈值增益可以使用获得的特征值和计算出的谐振器有效长度,通过简单的公式进行计算。进行圆柱反谐振反射光波导(ARROW)VCSEL的计算以验证模型。

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