Color Routing and Beam Steering of Single-Molecule Emission with a Spherical Silicon Nanoantenna

Fuente: arXiv
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Bibliographic Details
Main Authors: Sanz-Paz, Maria, Siegel, Nicole, Serrera, Guillermo, Gonzalez-Colsa, Javier, Zhu, Fangjia, Kolataj, Karol, Fujii, Minoru, Sugimoto, Hiroshi, Albella, Pablo, Acuna, Guillermo P.
Format: Preprint
Published: 2025
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author Sanz-Paz, Maria
Siegel, Nicole
Serrera, Guillermo
Gonzalez-Colsa, Javier
Zhu, Fangjia
Kolataj, Karol
Fujii, Minoru
Sugimoto, Hiroshi
Albella, Pablo
Acuna, Guillermo P.
author_facet Sanz-Paz, Maria
Siegel, Nicole
Serrera, Guillermo
Gonzalez-Colsa, Javier
Zhu, Fangjia
Kolataj, Karol
Fujii, Minoru
Sugimoto, Hiroshi
Albella, Pablo
Acuna, Guillermo P.
contents Single-photon emitters radiate as electric dipoles, which limits light collection efficiency and complicates integration into flat photonic devices. Developing nanophotonic structures capable of directing photon emission with tunable angular distributions in the visible spectrum has been pursued for applications ranging from integrated optical systems to discrimination of molecular species. To date, such directional control has been achieved using components whose overall footprint is larger than the emission wavelength and often rely on lossy plasmonic components. Here, we employ the DNA origami technique for deterministic nanoscale assembly, positioning single fluorophores in nanometric proximity to a single silicon spherical nanoparticle and demonstrate unidirectional emission with forward-to-backward intensity ratios up to ~7 dB. Furthermore, we show that a single silicon nanosphere antenna can function as a color router or a beam steerer depending on its size, emitter spectral range and emitter-nanoparticle distance.
format Preprint
id arxiv_https___arxiv_org_abs_2510_20667
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Color Routing and Beam Steering of Single-Molecule Emission with a Spherical Silicon Nanoantenna
Sanz-Paz, Maria
Siegel, Nicole
Serrera, Guillermo
Gonzalez-Colsa, Javier
Zhu, Fangjia
Kolataj, Karol
Fujii, Minoru
Sugimoto, Hiroshi
Albella, Pablo
Acuna, Guillermo P.
Optics
Single-photon emitters radiate as electric dipoles, which limits light collection efficiency and complicates integration into flat photonic devices. Developing nanophotonic structures capable of directing photon emission with tunable angular distributions in the visible spectrum has been pursued for applications ranging from integrated optical systems to discrimination of molecular species. To date, such directional control has been achieved using components whose overall footprint is larger than the emission wavelength and often rely on lossy plasmonic components. Here, we employ the DNA origami technique for deterministic nanoscale assembly, positioning single fluorophores in nanometric proximity to a single silicon spherical nanoparticle and demonstrate unidirectional emission with forward-to-backward intensity ratios up to ~7 dB. Furthermore, we show that a single silicon nanosphere antenna can function as a color router or a beam steerer depending on its size, emitter spectral range and emitter-nanoparticle distance.
title Color Routing and Beam Steering of Single-Molecule Emission with a Spherical Silicon Nanoantenna
topic Optics
url https://arxiv.org/abs/2510.20667