In this paper we show analytically and numerically the formation of a near-field stable optical binding between two identical plasmonic particles, induced by an incident plane wave. The equilibrium binding distance is controlled by the angle between the polarization plane of the incoming field and the dimer axis, for which we have calculated an explicit formula. We have found that the condition to achieve stable binding depends on the particle’s dielectric function and happens near the frequency of the dipole plasmonic resonance. The binding stiffness of this stable attaching interaction is four orders of magnitude larger than the usual far-field optical binding and is formed orthogonal to the propagation direction of the incident beam (tra...
We present calculations of the optical forces between two metal nanospheres forming a hybridized pla...
Plasmonic antennas improve the stiffness and resolution of optical tweezers by producing a strong ne...
We present calculations of the optical forces between two metal nanospheres forming a hybridized pla...
Abstract In this paper we show analytically and numerically the formation of a near-field stable opt...
[EN] Optical binding allows creation of mechanically stable nanoparticle configurations owing to for...
The physical origins of transverse optical binding force and torque beyond Rayleigh approximation ha...
International audienceWe present a theoretical and numerical study of the optical binding and optica...
International audienceAn ensemble of spherical particles with arbitrary dielectric permittivity and ...
This work studies the optical binding of a dimer composed by dielectric particles close to a graphen...
Abstract. An ensemble of spherical particles with arbitrary dielectric permittivity and magnetic per...
Near-field optical binding force is an emerging new topic in the field of optical manipulation and p...
The demonstration of optical binding of micro-particles placed in intense optical fields has resulte...
The demonstration of optical binding of micro-particles placed in intense optical fields has resulte...
We present a theoretical and numerical study of the optical binding and optical torque between two R...
An ensemble of spherical particles with arbitrary dielectric permittivity and magnetic penneability ...
We present calculations of the optical forces between two metal nanospheres forming a hybridized pla...
Plasmonic antennas improve the stiffness and resolution of optical tweezers by producing a strong ne...
We present calculations of the optical forces between two metal nanospheres forming a hybridized pla...
Abstract In this paper we show analytically and numerically the formation of a near-field stable opt...
[EN] Optical binding allows creation of mechanically stable nanoparticle configurations owing to for...
The physical origins of transverse optical binding force and torque beyond Rayleigh approximation ha...
International audienceWe present a theoretical and numerical study of the optical binding and optica...
International audienceAn ensemble of spherical particles with arbitrary dielectric permittivity and ...
This work studies the optical binding of a dimer composed by dielectric particles close to a graphen...
Abstract. An ensemble of spherical particles with arbitrary dielectric permittivity and magnetic per...
Near-field optical binding force is an emerging new topic in the field of optical manipulation and p...
The demonstration of optical binding of micro-particles placed in intense optical fields has resulte...
The demonstration of optical binding of micro-particles placed in intense optical fields has resulte...
We present a theoretical and numerical study of the optical binding and optical torque between two R...
An ensemble of spherical particles with arbitrary dielectric permittivity and magnetic penneability ...
We present calculations of the optical forces between two metal nanospheres forming a hybridized pla...
Plasmonic antennas improve the stiffness and resolution of optical tweezers by producing a strong ne...
We present calculations of the optical forces between two metal nanospheres forming a hybridized pla...