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Tunable optical matter: electrostatic repulsion modulates near- and far-field gold nanoparticle arrangements

  • Jim Jui-Kai Chen
  • , Jorge Olmos-Trigo
  • , Boris Louis
  • , Chih-Hao Huang
  • , Susana Rocha
  • , Hiroshi Masuhara
  • , Johan Hofkens
  • , Rafael Delgado-Buscalioni
  • , Roger Bresolí-Obach*
  • , Manuel Marques*
  • , Marc Melendez Schofield*
  • *Autor/a de correspondencia de este trabajo

Producción científica: Artículo en revista indizadaArtículorevisión exhaustiva

Resumen

The dynamics and equilibrium configurations of immersed optically-bound particles are complex phenomena involving several physical mechanisms such as optical forces, electrostatic interactions, and fluid dynamics. In this work, we unravel, using experiments and numerical simulations, the key role played by short-range electrostatic forces. The repulsive interaction among gold nanoparticles is adjusted by changing the salt concentration. When the electrostatic interaction is reduced, near-field optical binding with particles oriented along the polarization direction is promoted, while, for low values of the salt concentration, inter-particle repulsion induces far-field (FF) optical binding configurations oriented perpendicular to the polarization. The importance of electrostatic force is confirmed by a theoretical model in which the repulsive effect is explicitly tuned. The numerical results reproduce the measured particle configurations and highlight the dominant role of electrostatic interactions, particularly in FF optical binding configurations.
Idioma originalInglés
Páginas (desde-hasta)1251 - 1259
Número de páginas9
PublicaciónNanoscale Advances
Volumen8
N.º4
Fecha en línea anticipada30 dic 2025
DOI
EstadoPublicada - 17 feb 2026

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