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Three-dimensional finite element computation of laser cavity eigenmodes [corrected]
Konrad Altmann1, Christoph Pflaum, David Seider
1LAS-CAD GmbH, Brunhildenstrasse 9, 80639 München, Germany.
Applied Optics
|April 7, 2004
Summary
A novel finite element analysis method accurately computes laser resonator eigenmodes. This approach improves upon Gaussian approximations, especially for complex laser cavities with thermal lensing effects.
Area of Science:
- Optics and Photonics
- Computational Physics
- Laser Engineering
Background:
- Accurate computation of laser resonator eigenmodes is crucial for laser design and performance optimization.
- Traditional methods like the Gaussian mode approximation have limitations, particularly in complex optical systems.
- Finite element analysis (FEA) offers a powerful numerical tool for solving complex wave equations.
Purpose of the Study:
- To present a new finite element analysis (FEA) method for calculating laser resonator eigenmodes.
- To transform the scalar wave equation into a solvable three-dimensional eigenvalue problem.
- To verify the accuracy of the FEA method against established algorithms and demonstrate its utility in realistic laser scenarios.
Main Methods:
- The scalar wave equation (∇² + k²)E(x, y, z) = 0 is utilized.
- Separation of the propagation factor exp(-ikz) from the phasor amplitude E(x, y, z) is performed.
- A two-wave ansatz represents the beam within standing wave resonators.
- The method is validated using the Gaussian mode algorithm for cavities with parabolic optical elements.
Main Results:
- The FEA method was successfully verified against the Gaussian mode algorithm for parabolic optical elements.
- The method accurately models the beam within standing wave resonators using a two-wave ansatz.
- Significant deviations between Gaussian approximation and numerical solutions were observed for a diode-pumped solid-state laser with thermal lensing.
Conclusions:
- The presented FEA method provides a robust and accurate approach for computing laser resonator eigenmodes.
- This technique overcomes limitations of the Gaussian approximation, especially in lasers with intracavity thermal lensing.
- The FEA method offers a valuable tool for the precise design and analysis of advanced laser systems.