Modal Theory for Twisted Waveguides

Morozko, Fyodor and Karabchevsky, Alina and Novitsky, Andrey (2022) Modal Theory for Twisted Waveguides. In: Metamaterials XIII :. Proceedings of SPIE - The International Society for Optical Engineering . SPIE, Virtual, Online. ISBN 9781510651364

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Abstract

Twisted waveguides are promising building blocks for broadband polarization rotation in integrated photonics. They may find applications in polarization-encoded telecommunications and quantum-optical systems. In our work, we develop a rigorous modal theory for such waveguides. To this end, we define an eigenmode of a twisted waveguide as a natural generalization of the eigenmode of a straight waveguide. Using covariant approach for expressing Maxwell’s equations in helical reference frame, we obtain the eigenmode equation which appears to be nonlinear with respect to the eigenvalue, i.e. propagation constant. By analyzing the obtained equations we establish fundamental properties of the eigenmodes and prove their orthogonality. We develop a finite-difference full-vectorial scheme for solving the eigenmode equation and solve it using two approaches: with perturbation theory and using routines for nonlinear eigenvalue problems. By analyzing the obtained propagation constants and modal fields we explain the modal mechanism of polarization rotation in twisted waveguides and explain qualitatively polarization conversion efficiency dependence on twist length. Although photonic applications are of our primary concern, our results are general and apply to twisted waveguides of arbitrary architecture.

Item Type:
Contribution in Book/Report/Proceedings
Additional Information:
Publisher Copyright: © 2022 SPIE.
Uncontrolled Keywords:
/dk/atira/pure/subjectarea/asjc/2500/2504
Subjects:
?? eigenmode expansion methodfinite-difference methodhelical coordinatesnonlinear eigenvalue problempolarization conversiontwisted waveguideselectronic, optical and magnetic materialscondensed matter physicscomputer science applicationsapplied mathematicsele ??
ID Code:
224943
Deposited By:
Deposited On:
02 Jan 2025 11:25
Refereed?:
Yes
Published?:
Published
Last Modified:
02 Jan 2025 11:25