Multi-dimensional potential energy surfaces are associated with optical binding. A detailed exploration of the available degrees of geometric freedom reveals unexpected turning points, producing intricate patterns of local force and torque. Although optical pair interactions outweigh Casimir-Polder coupling even over short distances, the forces are not always attractive. Numerous local potential minimum and maximum can be located, and mapped on contour diagrams. Islands of stability appear, and structures conducive to the formation of rings. The results, based on quantum electrodynamics, apply to optically trapped molecules, nanoparticles, microparticles and colloids
Recently, emerging from studies based on quantum electrodynamics, it has been shown possible to sign...
With appropriately selected optical frequencies, pulses of radiation propagating through a system of...
Optical binding is a laser-induced inter-particle force that exists between two or more particles su...
Multi-dimensional potential energy surfaces are associated with optical binding. A detailed explorat...
The term 'optical binding' conveniently encapsulates a variety of phenomena whereby light can exert ...
To understand the forces and dynamics of two or more neutral particles trapped within an optical bea...
Recent quantum electrodynamical studies on optically induced inter-particle potential energy surface...
Addressing optically induced interactions between nanoparticles, new results from quantum electrodyn...
Optical binding is an optomechanical effect exhibited by systems of micro- and nanoparticles, suitab...
Optical binding is a phenomenon that is exhibited by micro-and nano-particle systems, suitably irrad...
The phenomenon of optical binding is now experimentally very well established. With a recognition of...
In the interactions between particles of material with slightly different electronic levels, unusual...
Optical binding is a phenomenon that is exhibited by micro-and nano-particles systems, suitably irra...
Laser light can induce binding or repulsive forces between particles and thus facilitate manipulatio...
On the propagation of radiation with a suitably resonant optical frequency through a dense chromopho...
Recently, emerging from studies based on quantum electrodynamics, it has been shown possible to sign...
With appropriately selected optical frequencies, pulses of radiation propagating through a system of...
Optical binding is a laser-induced inter-particle force that exists between two or more particles su...
Multi-dimensional potential energy surfaces are associated with optical binding. A detailed explorat...
The term 'optical binding' conveniently encapsulates a variety of phenomena whereby light can exert ...
To understand the forces and dynamics of two or more neutral particles trapped within an optical bea...
Recent quantum electrodynamical studies on optically induced inter-particle potential energy surface...
Addressing optically induced interactions between nanoparticles, new results from quantum electrodyn...
Optical binding is an optomechanical effect exhibited by systems of micro- and nanoparticles, suitab...
Optical binding is a phenomenon that is exhibited by micro-and nano-particle systems, suitably irrad...
The phenomenon of optical binding is now experimentally very well established. With a recognition of...
In the interactions between particles of material with slightly different electronic levels, unusual...
Optical binding is a phenomenon that is exhibited by micro-and nano-particles systems, suitably irra...
Laser light can induce binding or repulsive forces between particles and thus facilitate manipulatio...
On the propagation of radiation with a suitably resonant optical frequency through a dense chromopho...
Recently, emerging from studies based on quantum electrodynamics, it has been shown possible to sign...
With appropriately selected optical frequencies, pulses of radiation propagating through a system of...
Optical binding is a laser-induced inter-particle force that exists between two or more particles su...