Nearly perfect routing of chiral light by plasmonic grating on slab waveguide

Fuente: arXiv
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Autori principali: Fradkin, Ilia M., Demenev, Andrey A., Kovalchuk, Anatoly V., Kulakovskii, Vladimir D., Antonov, Vladimir N., Dyakov, Sergey A., Gippius, Nikolay A.
Natura: Preprint
Pubblicazione: 2023
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author Fradkin, Ilia M.
Demenev, Andrey A.
Kovalchuk, Anatoly V.
Kulakovskii, Vladimir D.
Antonov, Vladimir N.
Dyakov, Sergey A.
Gippius, Nikolay A.
author_facet Fradkin, Ilia M.
Demenev, Andrey A.
Kovalchuk, Anatoly V.
Kulakovskii, Vladimir D.
Antonov, Vladimir N.
Dyakov, Sergey A.
Gippius, Nikolay A.
contents Grating couplers are widely used to couple waveguide modes with the far field. Their usefulness is determined not only by energy efficiency but also by additional supported functionality. In this paper, we demonstrate a plasmonic grating on a silicon nitride slab waveguide that couples both TE and TM waveguide modes with circularly polarized light in the far field. Specifically, we experimentally confirmed that circularly polarized light excites TE and TM modes propagating in opposite directions, and the direction is controlled by the handedness. The routing efficiency for normally incident light reaches up to 95%. The same structure operates in the outcoupling regime as well, demonstrating up to 97% degree of circular polarization, where the handedness is determined by the polarization and propagation direction of outcoupled modes. Our results pave the way for the realization of polarization-division multiplexers and demultiplexers, integrated circular polarization emitters, as well as detectors of the polarization state of the incident optical field.
format Preprint
id arxiv_https___arxiv_org_abs_2312_05865
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Nearly perfect routing of chiral light by plasmonic grating on slab waveguide
Fradkin, Ilia M.
Demenev, Andrey A.
Kovalchuk, Anatoly V.
Kulakovskii, Vladimir D.
Antonov, Vladimir N.
Dyakov, Sergey A.
Gippius, Nikolay A.
Optics
Grating couplers are widely used to couple waveguide modes with the far field. Their usefulness is determined not only by energy efficiency but also by additional supported functionality. In this paper, we demonstrate a plasmonic grating on a silicon nitride slab waveguide that couples both TE and TM waveguide modes with circularly polarized light in the far field. Specifically, we experimentally confirmed that circularly polarized light excites TE and TM modes propagating in opposite directions, and the direction is controlled by the handedness. The routing efficiency for normally incident light reaches up to 95%. The same structure operates in the outcoupling regime as well, demonstrating up to 97% degree of circular polarization, where the handedness is determined by the polarization and propagation direction of outcoupled modes. Our results pave the way for the realization of polarization-division multiplexers and demultiplexers, integrated circular polarization emitters, as well as detectors of the polarization state of the incident optical field.
title Nearly perfect routing of chiral light by plasmonic grating on slab waveguide
topic Optics
url https://arxiv.org/abs/2312.05865