| Literature DB >> 26393983 |
Maxim R Shcherbakov1, Polina P Vabishchevich1, Alexander S Shorokhov1, Katie E Chong, Duk-Yong Choi, Isabelle Staude, Andrey E Miroshnichenko, Dragomir N Neshev, Andrey A Fedyanin1, Yuri S Kivshar.
Abstract
We demonstrate experimentally ultrafast all-optical switching in subwavelength nonlinear dielectric nanostructures exhibiting localized magnetic Mie resonances. We employ amorphous silicon nanodisks to achieve strong self-modulation of femtosecond pulses with a depth of 60% at picojoule-per-disk pump energies. In the pump-probe measurements, we reveal that switching in the nanodisks can be governed by pulse-limited 65 fs-long two-photon absorption being enhanced by a factor of 80 with respect to the unstructured silicon film. We also show that undesirable free-carrier effects can be suppressed by a proper spectral positioning of the magnetic resonance, making such a structure the fastest all-optical switch operating at the nanoscale.Entities:
Keywords: Nonlinear optics; all-optical switching; femtosecond optics; metasurfaces; optical magnetism; silicon photonics
Mesh:
Year: 2015 PMID: 26393983 DOI: 10.1021/acs.nanolett.5b02989
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189