We study the forces generated by an electromagnetic field on two coupled gold nanowires at the vicinity of the plasmon resonance wavelength. Two different regimes are observed, depending on the separation distance d between the wires. In the near field coupling regime, both attractive and repulsive forces can be generated, depending on d and the illumination wavelength. Furthermore, at the plasmon resonance, it is possible to create forces 100 times larger than the radiation pressure. In the far field coupling regime, both particles are pushed by the incident field. However, the force amplitude applied on each wire is modulated as a function of d, even for large separations. This indicates that the system behaves like a cavity and pseudo Fa...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We study the coupling induced by retardation effects when two plasmon-resonant nanoparticles are int...
For millennia, scientists have sought to uncover the secrets of what holds the world together. Optic...
We study the optical force arising when isolated gold nanowire pairs and metamaterials with a gold n...
With the rapid development of nanoscience and nanotechnology, surface plasmonics based on metal nan...
We investigate the plasmon resonances of interacting silver nanowires with a 50 nm diameter. Both no...
We present a computational study of the internal optical forces arising in plasmonic gap antennas, d...
Noble metal nanostructures possess unique properties including large near-field enhancement and stro...
Plasmonic antennas improve the stiffness and resolution of optical tweezers by producing a strong ne...
This work was supported by the Engineering and Physical Sciences Research Council [grant number EP/L...
n this article, we share our vision for a future nanofactory, where plasmonic trapping is used to co...
Optical trapping of metal nanoparticles investigates phenomena at the interface of plasmonics and op...
We compare the optical response of isolated nanowires, double-wire systems, and Pi-structures, and s...
We have used the Maxwell stress tensor method to calculate the optical forces acting upon a dielectr...
In this thesis I describe a number of studies to examine some high order effects of advanced trappin...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We study the coupling induced by retardation effects when two plasmon-resonant nanoparticles are int...
For millennia, scientists have sought to uncover the secrets of what holds the world together. Optic...
We study the optical force arising when isolated gold nanowire pairs and metamaterials with a gold n...
With the rapid development of nanoscience and nanotechnology, surface plasmonics based on metal nan...
We investigate the plasmon resonances of interacting silver nanowires with a 50 nm diameter. Both no...
We present a computational study of the internal optical forces arising in plasmonic gap antennas, d...
Noble metal nanostructures possess unique properties including large near-field enhancement and stro...
Plasmonic antennas improve the stiffness and resolution of optical tweezers by producing a strong ne...
This work was supported by the Engineering and Physical Sciences Research Council [grant number EP/L...
n this article, we share our vision for a future nanofactory, where plasmonic trapping is used to co...
Optical trapping of metal nanoparticles investigates phenomena at the interface of plasmonics and op...
We compare the optical response of isolated nanowires, double-wire systems, and Pi-structures, and s...
We have used the Maxwell stress tensor method to calculate the optical forces acting upon a dielectr...
In this thesis I describe a number of studies to examine some high order effects of advanced trappin...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We study the coupling induced by retardation effects when two plasmon-resonant nanoparticles are int...
For millennia, scientists have sought to uncover the secrets of what holds the world together. Optic...