Recently a non-contact organization of sub-micron colloidal particles in the vicinity of liquid-solid interface attracted great attention in connection with the development of imaging techniques using total internal reflection. We focus here on the theoretical description of the optical forces acting on a sub-micron particle placed in an interference field created by two counter-propagating evanescent waves. We study the behavior of nanoparticles by means of Rayleigh approximation, and also the behaviour of sub-micron particles by Lorentz-Mie scattering theory. Numerical results show how these forces depend on the particle size and angle of incidence of both beams. The alternating dependence on the bead size was proven experimentally, and t...
In this Letter, we demonstrate stable optical binding of spherical microparticles in counter-propaga...
It has been conjectured for some time that colloidal suspensions can act as artificial self-guiding ...
With the rapid development of nanoscience and nanotechnology, surface plasmonics based on metal nan...
We present an experimental and theoretical study of long distance optical binding effects acting upo...
Optical trapping of colloidal microparticle arrays in evanescent fields is a relatively new area of ...
We present the first theoretical and experimental study of dielectric sub- micron particle behaviour...
We present a study of optically bound matter formation in a counter-propagating evanescent field, ex...
We present the theoretical and experimental study of nondiffracting Bessel beams as a device for opt...
Over the last decade we developed instrumental equipment, based onevanescent light scattering, to in...
An extended interference pattern close to the surface may result in either a transmissive or an evan...
We theoretically analyze optical forces on aggregates of metal nanoparticles in a focused Gaussian b...
We numerically show that both repulsive and attractive (bipolar) optical forces can be exerted on a ...
AbstractWe investigate the manipulation of microscopic and nanoscopic particles using the evanescent...
The demonstration of optical binding of micro-particles placed in intense optical fields has resulte...
We show that the forces associated with near-field optical micromanipulation can be greatly increase...
In this Letter, we demonstrate stable optical binding of spherical microparticles in counter-propaga...
It has been conjectured for some time that colloidal suspensions can act as artificial self-guiding ...
With the rapid development of nanoscience and nanotechnology, surface plasmonics based on metal nan...
We present an experimental and theoretical study of long distance optical binding effects acting upo...
Optical trapping of colloidal microparticle arrays in evanescent fields is a relatively new area of ...
We present the first theoretical and experimental study of dielectric sub- micron particle behaviour...
We present a study of optically bound matter formation in a counter-propagating evanescent field, ex...
We present the theoretical and experimental study of nondiffracting Bessel beams as a device for opt...
Over the last decade we developed instrumental equipment, based onevanescent light scattering, to in...
An extended interference pattern close to the surface may result in either a transmissive or an evan...
We theoretically analyze optical forces on aggregates of metal nanoparticles in a focused Gaussian b...
We numerically show that both repulsive and attractive (bipolar) optical forces can be exerted on a ...
AbstractWe investigate the manipulation of microscopic and nanoscopic particles using the evanescent...
The demonstration of optical binding of micro-particles placed in intense optical fields has resulte...
We show that the forces associated with near-field optical micromanipulation can be greatly increase...
In this Letter, we demonstrate stable optical binding of spherical microparticles in counter-propaga...
It has been conjectured for some time that colloidal suspensions can act as artificial self-guiding ...
With the rapid development of nanoscience and nanotechnology, surface plasmonics based on metal nan...