Directional sources realised by toroidal dipoles

Fuente: arXiv
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Main Authors: Jung, Junho, Cheng, Yuqiong, Xiao, Wanyue, Wang, Shubo
Format: Preprint
Published: 2024
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_version_ 1866913490501894144
author Jung, Junho
Cheng, Yuqiong
Xiao, Wanyue
Wang, Shubo
author_facet Jung, Junho
Cheng, Yuqiong
Xiao, Wanyue
Wang, Shubo
contents Directional optical sources can give rise to the directional excitation and propagation of light. The directionality of the conventional directional dipole (CDD) sources are attributed to the interference of the electric and/or magnetic dipoles, while the effect of the toroidal dipole on optical directionality remains unexplored.} Here, we numerically and analytically investigate the directional properties of the toroidal dipole. We show that the toroidal dipole can replace the electric dipole in the CDD sources to form the pseudo directional dipoles (PDDs), which can be applied to achieve analogous near-field directional coupling with a silicon waveguide. Moreover, the directionality of the PDDs can be flexibly controlled by changing the geometric parameters of the toroidal dipole, leading to tunable asymmetric coupling between the sources and the waveguide. These new types of directional sources provide more degrees of freedom for tailoring the optical directionality compared to the conventional sources. The results open new possibilities for directional light manipulation and can find applications in on-chip optical routing, waveguiding, and nanophotonic communications.
format Preprint
id arxiv_https___arxiv_org_abs_2409_01526
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Directional sources realised by toroidal dipoles
Jung, Junho
Cheng, Yuqiong
Xiao, Wanyue
Wang, Shubo
Optics
Directional optical sources can give rise to the directional excitation and propagation of light. The directionality of the conventional directional dipole (CDD) sources are attributed to the interference of the electric and/or magnetic dipoles, while the effect of the toroidal dipole on optical directionality remains unexplored.} Here, we numerically and analytically investigate the directional properties of the toroidal dipole. We show that the toroidal dipole can replace the electric dipole in the CDD sources to form the pseudo directional dipoles (PDDs), which can be applied to achieve analogous near-field directional coupling with a silicon waveguide. Moreover, the directionality of the PDDs can be flexibly controlled by changing the geometric parameters of the toroidal dipole, leading to tunable asymmetric coupling between the sources and the waveguide. These new types of directional sources provide more degrees of freedom for tailoring the optical directionality compared to the conventional sources. The results open new possibilities for directional light manipulation and can find applications in on-chip optical routing, waveguiding, and nanophotonic communications.
title Directional sources realised by toroidal dipoles
topic Optics
url https://arxiv.org/abs/2409.01526