Transport of a topologically protected photonic waveguide on-chip

S Yan, J Yang, S Shi, Z Zuo, C Wang, X Xu - Photonics Research, 2023 - opg.optica.org
We propose a design on integrated optical devices on-chip with an extra width degree of
freedom by using a photonic crystal waveguide with Dirac points between two photonic …

Transport of topologically protected photonic waveguide on chip

S Yan, J Yang, S Shi, Z Zuo, C Wang, X Xu - 2023 - preprints.opticaopen.org
We propose a new design on integrated optical devices on-chip with an extra width degree
of freedom by using a photonic crystal waveguide with Dirac points between two photonic …

Transport of topologically protected photonic waveguide on chip

S Yan, J Yang, S Shi, Z Zuo, C Wang, X Xu - arXiv preprint arXiv …, 2023 - arxiv.org
We propose a new design on integrated optical devices on-chip with an extra width degree
of freedom by using a photonic crystal waveguide with Dirac points between two photonic …

[PDF][PDF] Transport of a topologically protected photonic waveguide on-chip

SAI YAN, J YANG, S SHI, Z ZUO, CAN WANG, X XU - researching.cn
Due to the advantages of low energy cost and broad bandwidth in processing information,
on-chip nanophotonic devices have been widely studied in recent years [1–4], becoming an …

Transport of topologically protected photonic waveguide on chip

S Yan, J Yang, S Shi, Z Zuo, C Wang, X Xu - arXiv e-prints, 2023 - ui.adsabs.harvard.edu
We propose a new design on integrated optical devices on-chip with an extra width degree
of freedom by using a photonic crystal waveguide with Dirac points between two photonic …

Transport of topologically protected photonic waveguide on chip

S Yan, J Yang, S Shi, Z Zuo, C Wang, X Xu - 2023 - preprints.opticaopen.org
We propose a new design on integrated optical devices on-chip with an extra width degree
of freedom by using a photonic crystal waveguide with Dirac points between two photonic …