Detection of Hybrid Optical Anapoles in Dielectric Microspheres

Fuente: arXiv
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Autores principales: Manna, Uttam, Gómez-Viloria, Iker, Sevik, Robert, Tribaldo, Isaac, Biswas, Mahua, Molina-Terriza, Gabriel, Olmos-Trigo, Jorge
Formato: Preprint
Publicado: 2026
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author Manna, Uttam
Gómez-Viloria, Iker
Sevik, Robert
Tribaldo, Isaac
Biswas, Mahua
Molina-Terriza, Gabriel
Olmos-Trigo, Jorge
author_facet Manna, Uttam
Gómez-Viloria, Iker
Sevik, Robert
Tribaldo, Isaac
Biswas, Mahua
Molina-Terriza, Gabriel
Olmos-Trigo, Jorge
contents Nonradiating optical anapoles are special configurations of charge_current distributions that do not radiate. It was theoretically predicted that, for microspheres, electric and magnetic dipolar coefficients can simultaneously vanish by engineering the incident light, leading to the excitation of nonradiating hybrid optical anapoles. In this work, the experimental detection of hybrid optical anapoles in dielectric microspheres (TiO2) is reported using dual detection optical spectroscopy, developed to enable sequential measurement of forward and backward scattering under tightly_focused Gaussian beam (TFGB) illumination. The results show that the excitation of TiO2 microspheres (diameter, d approx. 1 um) under TFGB illumination leads to the appearance of scattering minima in both the forward and backward directions within specific wavelength ranges. These scattering minima are found to be due to vanishing electric and magnetic dipolar coefficients associated with hybrid optical anapoles. The ability to confine electromagnetic fields associated with hybrid optical anapoles can give rise to several novel optical phenomena and applications.
format Preprint
id arxiv_https___arxiv_org_abs_2601_23202
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Detection of Hybrid Optical Anapoles in Dielectric Microspheres
Manna, Uttam
Gómez-Viloria, Iker
Sevik, Robert
Tribaldo, Isaac
Biswas, Mahua
Molina-Terriza, Gabriel
Olmos-Trigo, Jorge
Optics
Nonradiating optical anapoles are special configurations of charge_current distributions that do not radiate. It was theoretically predicted that, for microspheres, electric and magnetic dipolar coefficients can simultaneously vanish by engineering the incident light, leading to the excitation of nonradiating hybrid optical anapoles. In this work, the experimental detection of hybrid optical anapoles in dielectric microspheres (TiO2) is reported using dual detection optical spectroscopy, developed to enable sequential measurement of forward and backward scattering under tightly_focused Gaussian beam (TFGB) illumination. The results show that the excitation of TiO2 microspheres (diameter, d approx. 1 um) under TFGB illumination leads to the appearance of scattering minima in both the forward and backward directions within specific wavelength ranges. These scattering minima are found to be due to vanishing electric and magnetic dipolar coefficients associated with hybrid optical anapoles. The ability to confine electromagnetic fields associated with hybrid optical anapoles can give rise to several novel optical phenomena and applications.
title Detection of Hybrid Optical Anapoles in Dielectric Microspheres
topic Optics
url https://arxiv.org/abs/2601.23202