| Literature DB >> 26259100 |
Sergey Makarov1, Sergey Kudryashov1,2, Ivan Mukhin1,3, Alexey Mozharov3, Valentin Milichko1, Alexander Krasnok1, Pavel Belov1.
Abstract
We propose a novel approach for efficient tuning of optical properties of a high refractive index subwavelength nanoparticle with a magnetic Mie-type resonance by means of femtosecond laser irradiation. This concept is based on ultrafast photoinjection of dense (>10(20) cm(-3)) electron-hole plasma within such nanoparticle, drastically changing its transient dielectric permittivity. This allows manipulation by both electric and magnetic nanoparticle responses, resulting in dramatic changes of its scattering diagram and scattering cross section. We experimentally demonstrate 20% tuning of reflectance of a single silicon nanoparticle by femtosecond laser pulses with wavelength in the vicinity of the magnetic dipole resonance. Such a single-particle nanodevice enables designing of fast and ultracompact optical switchers and modulators.Entities:
Keywords: Huygens source; dense electron−hole plasma; femtosecond laser; magnetic Mie-type resonance; silicon nanoparticles
Year: 2015 PMID: 26259100 DOI: 10.1021/acs.nanolett.5b02534
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189