Symmetry-guided modal control in elliptical femtosecond-laser-written photonic waveguides
Tadas Paulauskas, Ubaid Ur Rehman, Eimantas Dermauskas, Valdemar Stankevic
Abstract
Few-mode photonic circuits can increase functionality without multiplying waveguide paths, but bends and fabrication errors can mix their transverse modes. We investigate a strategy in which waveguide confinement and perturbation parity are engineered together in vertically elliptical, femtosecond-laser-written glass waveguides. The intended modal basis comprises the even 1S mode and the vertically odd 2Py mode. No window-converged 2Px state is resolved for a lower-confinement (LC) design, whereas a higher-confinement (HC) design guides 2Px, which must therefore be isolated by symmetry. In scalar beam-propagation calculations, the 1S-2Py propagation-constant splitting predicts the optimized periods of a vertically modulated coherent modal splitter to within 1.0\%. Horizontal S-bends remain parity-mismatched for 1S 2Py coupling, while the symmetry-allowed HC 1S → 2Px transfer reaches only 0.6\% at the largest displacement. At a displacement of 150~μm, the HC design retains approximately the same 2Py power as the LC design retains at 40~μm. Thermal and stochastic writing-error calculations reveal the resulting trade-off: stronger confinement improves modal-power retention, but writing jitter that breaks x-parity can populate the guided 2Px mode. These results demonstrate how modal-basis engineering can shift part of the crosstalk-control burden from the trajectory to waveguide symmetry, supporting joint path--mode degrees of freedom in quantum photonic applications.
Create a lesson
Related papers
Correlation geometry and topology of structured optical beams
Jyrki Laatikainen, Olga Korotkova
Dual-comb generated in single thin-film lithium niobate microrings
Renhong Gao, Qifeng Hou, Xinzhi Zheng et al.
350-GHz-Band 4 by 4 RTD Monostatic Radar Array for Sequential Multidirectional Ranging
Li Yi, Ryoma Nakamura, Shota Ito et al.
Multi-contrast wide-field mid-infrared photothermal imaging
Anooj Thayyil Raveendran, Cornelia Reuter, Samir F. El-Mashtoly et al.
Topological photonic cavities based on dissimilar Bragg gratings
Alejandro Sánchez-Sánchez, José Manuel Luque-González, Gauthier Krizman et al.
Wavelength-Multiplexed Nonlinear Computing with a Single-Layer Diffractive Optical Processor
Yongkang Cheng, Che-Yung Shen, Yuntian Wang et al.