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Título

Controlling lateral fano interference optical force with Au-Ge2Sb2Te5 hybrid nanostructure

AutorCao, Tun; Bao, Jiaxin; Mao, Libang; Zhang, Tianhang; Novitsky, Andrey; Nieto Vesperinas, Manuel; Qiu, Cheng-Wei
Palabras claveOptical force
Surface plasmons
Optical manipulation
Fano resonance
Phase change materials
Fecha de publicación19-oct-2016
EditorACS Publications
CitaciónACS Photonics 3(10): 1934-1942 (2016)
ResumenWe numerically demonstrate that a pronounced dipole-quadrupole (DQ) Fano resonance (FR) induced lateral force can be exerted on a dielectric particle 80 nm in radius (R = 80 nm) that is placed 5 nm above an asymmetric bow-tie nanoantenna array based on Au/GeSbTe dual layers. The DQ-FR-induced lateral force achieves a broad tuning range in the mid-infrared region by changing the states of the GeSbTe dielectric layer between amorphous and crystalline and in turn pushes the nanoparticle sideways in the opposite direction for a given wavelength. The mechanism of lateral force reversal is revealed through optical singularity in the Poynting vector. A thermal-electric simulation is adopted to investigate the temporal change of the GeSbTe film's temperature, which demonstrates the possibility of transiting the GeSbTe state by electrical heating. Our mechanism by tailoring the DQ-FR-induced lateral force presents clear advantages over the conventional nanoparticle manipulation techniques: it possesses a pronounced sideways force under a low incident light intensity of 10 mW/μm, a fast switching time of 2.6 μs, and a large tunable wavelength range. It results in a better freedom in flexible nanomechanical control and may provide a new means of biomedical sensing and nano-optical conveyor belts.
Versión del editorhttps://doi.org/10.1021/acsphotonics.6b00448
URIhttp://hdl.handle.net/10261/185812
DOI10.1021/acsphotonics.6b00448
Identificadoresdoi: 10.1021/acsphotonics.6b00448
e-issn: 2330-4022
Aparece en las colecciones: (ICMM) Artículos




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