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Numerical procedures for solving nonsymmetric eigenvalue problems associated with optical resonators
55
Citations
2
References
1978
Year
Numerical AnalysisEngineeringWave OpticProny MethodOptical PropertiesNonlinear Wave PropagationMatrix MethodComputational ElectromagneticsNonsymmetric Eigenvalue ProblemsPhotonicsPhysicsDominant EigenvaluesOptical ResonatorsNumerical ProceduresMatrix AnalysisMatrix ApproximationApplied PhysicsSpectral AnalysisNonlinear ResonanceDynamic Metamaterials
The Prony method is extended to handle the nonsymmetric algebraic eigenvalue problem and improved to search automatically for the number of dominant eigenvalues. A simple iterative algorithm is given to compute the associated eigenvectors. Resolution studies using the QR method are made in order to determine the accuracy of the matrix approximation. Numerical results are given for both simple well defined resonators and more complex advanced designs containing multiple propagation geometries and misaligned mirrors.
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