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  5. Multi-wavelength unidirectional forward scattering properties of the arrow-shaped gallium phosphide nanoantenna

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Article
en
2023

Multi-wavelength unidirectional forward scattering properties of the arrow-shaped gallium phosphide nanoantenna

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en
2023
Vol 40 (11)
Vol. 40
DOI: 10.1364/josaa.496501

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Paul Kim Ho Chu
Paul Kim Ho Chu

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Jingwei Lv
Yanru Ren
Debao Wang
+5 more

Abstract

An arrow-shaped gallium phosphide nanoantenna exhibits both near-field electric field enhancement and far-field unidirectional scattering, and the interference conditions involve electric and magnetic quadrupoles as well as toroidal dipoles. By using long-wavelength approximation and exact multipole decomposition, the interference conditions required for far-field unidirectional transverse light scattering and backward near-zero scattering at multiple wavelengths are determined. The near-field properties are excellent, as exemplified by large Purcell factors of 4.5×109 for electric dipole source excitation, 464.68 for magnetic dipole source excitation, and 700 V/m for the field enhancement factor. The degree of enhancement of unidirectional scattering is affected by structural parameters such as the angle and thickness of the nanoantenna. The arrow-shaped nanoantenna is an efficient platform to enhance the electric field and achieve high directionality of light scattering. Moreover, the nanostructure enables flexible manipulation of light waves and materials, giving rise to superior near-field and far-field performances, which are of great importance pertaining to the practicability and application potential of optical antennas in applications such as spectroscopy, sensing, displays, and optoelectronic devices.

How to cite this publication

Jingwei Lv, Yanru Ren, Debao Wang, Xinchen Xu, Wei Liu, Jianxin Wang, Chao Liu, Paul Kim Ho Chu (2023). Multi-wavelength unidirectional forward scattering properties of the arrow-shaped gallium phosphide nanoantenna. , 40(11), DOI: https://doi.org/10.1364/josaa.496501.

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Publication Details

Type

Article

Year

2023

Authors

8

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1364/josaa.496501

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