Sub-micron particles have been observed to spontaneously form regular two-dimensional structures in counterpropagating evanescent laser fields. We show that collective properties of large numbers of optically-trapped particles can be qualitatively different to the properties of small numbers. This is demonstrated both with a computer model and with experimental results. As the number of particles in the structure is increased, optical binding forces can be sufficiently large to overcome the optical landscape imposed by the interference fringes of the laser beams and impose a different, competing structure
Optical trapping of colloidal microparticle arrays in evanescent fields is a relatively new area of ...
Optical binding is a phenomenon that is exhibited by micro-and nano-particle systems, suitably irrad...
We demonstrate assembly of spheroidal Ag nanoparticle clusters, chains and arrays induced by optical...
Counterpropagating light fields have the ability to create self-organized one-dimensional optically ...
Laser light can induce binding or repulsive forces between particles and thus facilitate manipulatio...
The demonstration of optical binding of micro-particles placed in intense optical fields has resulte...
Very high frequency oscillations of intense light fields interact with micron-size dielectric object...
We present an experimental and theoretical study of long distance optical binding effects acting upo...
Optical binding has recently gained considerable attention because it enables the light-induced asse...
It is known that light can be used to manipulate and trap colloidal microspheres. What is less known...
Optical trapping and optical tweezers have been used to confine and control micron and nano-sized ob...
Optical binding is a laser-induced inter-particle force that exists between two or more particles su...
When an optically trapped and bound micrometer-sized chain of particles is subjected to a suitably o...
Optical manipulation is of broad interest in physics, chemistry, and biology. In the literature, mos...
We present a study of optically bound matter formation in a counter-propagating evanescent field, ex...
Optical trapping of colloidal microparticle arrays in evanescent fields is a relatively new area of ...
Optical binding is a phenomenon that is exhibited by micro-and nano-particle systems, suitably irrad...
We demonstrate assembly of spheroidal Ag nanoparticle clusters, chains and arrays induced by optical...
Counterpropagating light fields have the ability to create self-organized one-dimensional optically ...
Laser light can induce binding or repulsive forces between particles and thus facilitate manipulatio...
The demonstration of optical binding of micro-particles placed in intense optical fields has resulte...
Very high frequency oscillations of intense light fields interact with micron-size dielectric object...
We present an experimental and theoretical study of long distance optical binding effects acting upo...
Optical binding has recently gained considerable attention because it enables the light-induced asse...
It is known that light can be used to manipulate and trap colloidal microspheres. What is less known...
Optical trapping and optical tweezers have been used to confine and control micron and nano-sized ob...
Optical binding is a laser-induced inter-particle force that exists between two or more particles su...
When an optically trapped and bound micrometer-sized chain of particles is subjected to a suitably o...
Optical manipulation is of broad interest in physics, chemistry, and biology. In the literature, mos...
We present a study of optically bound matter formation in a counter-propagating evanescent field, ex...
Optical trapping of colloidal microparticle arrays in evanescent fields is a relatively new area of ...
Optical binding is a phenomenon that is exhibited by micro-and nano-particle systems, suitably irrad...
We demonstrate assembly of spheroidal Ag nanoparticle clusters, chains and arrays induced by optical...