Laser trapping has been utilized as tweezers to three-dimensionally trap nanoscale objects and has provided significant impacts in nanoscience and nanotechnology. The objects are immobilized at the position where the tightly focused laser beam is irradiated. Here, we report the swarming of gold nanoparticles in which component nanoparticles dynamically interact with each other, keeping their long interparticle distance around the trapping laser focus at a glass/solution interface. A pair of swarms are directionally extended outside the focal spot perpendicular to the linear polarization like a radiation pattern of dipole scattering, while a doughnut-shaped swarm is prepared by circularly polarized trapping laser. The light field is expanded...
We investigate experimentally and theoretically optical trapping of metal nanoparticles and aggregat...
Understanding whether noble-metal nanostructures can be trapped optically and under what conditions ...
Laser tweezing of optically resonant nanostructures, such as plasmonic nanoparticles and high-index ...
Laser trapping has been utilized as tweezers to three-dimensionally trap nanoscale objects and has p...
Plasmonic nanoparticles, typically gold and silver colloids, can be trapped by a highly focused Gaus...
Optical binding has recently gained considerable attention because it enables the light-induced asse...
Laser trapping at an interface is a unique platform for aligning and assembling nanomaterials outsid...
The invention of the laser in 1960 opened the door for a myriad of studies on the interactions betwe...
We show how light forces can be used to trap gold nanoaggregates of selected structure and optical p...
We report optical trapping and assembling of colloidal particles at a glass/solution interface with ...
Optical trapping using focused laser beams (laser tweezers) has been proven to be extremely useful f...
Light and heat are synergistic tools used in the manipulation of nanoparticles and biomolecules. Whe...
Particles that diffuse in close proximity to a surface are expected to behave differently than in fr...
ABSTRACT. We investigate experimentally and theoretically optical trapping of metal nanoparticles an...
Optical trapping using focused laser beams (laser tweezers) has been proven to be extremely useful f...
We investigate experimentally and theoretically optical trapping of metal nanoparticles and aggregat...
Understanding whether noble-metal nanostructures can be trapped optically and under what conditions ...
Laser tweezing of optically resonant nanostructures, such as plasmonic nanoparticles and high-index ...
Laser trapping has been utilized as tweezers to three-dimensionally trap nanoscale objects and has p...
Plasmonic nanoparticles, typically gold and silver colloids, can be trapped by a highly focused Gaus...
Optical binding has recently gained considerable attention because it enables the light-induced asse...
Laser trapping at an interface is a unique platform for aligning and assembling nanomaterials outsid...
The invention of the laser in 1960 opened the door for a myriad of studies on the interactions betwe...
We show how light forces can be used to trap gold nanoaggregates of selected structure and optical p...
We report optical trapping and assembling of colloidal particles at a glass/solution interface with ...
Optical trapping using focused laser beams (laser tweezers) has been proven to be extremely useful f...
Light and heat are synergistic tools used in the manipulation of nanoparticles and biomolecules. Whe...
Particles that diffuse in close proximity to a surface are expected to behave differently than in fr...
ABSTRACT. We investigate experimentally and theoretically optical trapping of metal nanoparticles an...
Optical trapping using focused laser beams (laser tweezers) has been proven to be extremely useful f...
We investigate experimentally and theoretically optical trapping of metal nanoparticles and aggregat...
Understanding whether noble-metal nanostructures can be trapped optically and under what conditions ...
Laser tweezing of optically resonant nanostructures, such as plasmonic nanoparticles and high-index ...