English

Gate-tunable spatial modulation of localized plasmon resonances

Mesoscale and Nanoscale Physics 2018-05-07 v1

Abstract

Nanoplasmonics exploits the coupling between light and collective electron density oscillations (plasmons) to bypass the stringent limits imposed by diffraction. This coupling enables confinement of light to sub-wavelength volumes and is usually exploited in nanostructured metals. Substantial efforts are being made at the current frontier of the field to employ electron systems in semiconducting and semimetallic materials since these add the exciting possibility of realizing electrically tunable and/or active nanoplasmonic devices. Here we demonstrate that a suitable design of the doping profile in a semiconductor nanowire (NW) can be used to tailor the plasmonic response and induce localization effects akin to those observed in metal nanoparticles. Moreover, by field-effect carrier modulation, we demonstrate that these localized plasmon resonances can be spatially displaced along the nanostructure body, thereby paving the way for the implementation of spatially tunable plasmonic circuits.

Keywords

Cite

@article{arxiv.1805.01801,
  title  = {Gate-tunable spatial modulation of localized plasmon resonances},
  author = {Andrea Arcangeli and Francesco Rossella and Andrea Tomadin and Jihua Xu and Daniele Ercolani and Lucia Sorba and Fabio Beltram and Alessandro Tredicucci and Marco Polini and Stefano Roddaro},
  journal= {arXiv preprint arXiv:1805.01801},
  year   = {2018}
}

Comments

12 pages, 3 figures

R2 v1 2026-06-23T01:45:20.509Z