AbstractWe investigate the manipulation of microscopic and nanoscopic particles using the evanescent optical field surrounding an optical fiber that is tapered to a micron-scale diameter, and propose that this scheme could be used to discriminate between, and thereby sort, metallic nanoparticles. First we show experimentally the concept of the transport of micron-sized spheres along a tapered fiber and measure the particle velocity. Having demonstrated the principle we then consider theoretically the application to the optical trapping and guiding of metallic nanoparticles, where the presence of a plasmon resonance is used to enhance optical forces. We show that the dynamics of the nanoparticles trapped by the evanescent field can be contro...
We propose to optically trap nanoparticles utilizing a single nanostructured glass-fiber tip. 3D tra...
Optical trapping of dielectric microparticles is reported using an optical tweezers based on two ori...
We report on the trapping of micrometer colloids using the evanescent wave from a multimode cylindri...
We investigate the manipulation of microscopic and nanoscopic particles using the evanescent optical...
AbstractWe investigate the manipulation of microscopic and nanoscopic particles using the evanescent...
Optical trapping is an established field for movement of micron-size objects and cells. However, tra...
Optical manipulation in the vicinity of ultrathin optical fibres has shown potential across several ...
Interaction of electromagnetic waves with small particles has been extensively investigated for dete...
Plasmonic nanoparticles, typically gold and silver colloids, can be trapped by a highly focused Gaus...
The precise noninvasive optical manipulation of nanometer-sized particles by evanescent fields, inst...
International audienceAdvances in optical trapping design principles have led to tremendous progress...
A stripped no-core optical fiber with a 125 µm diameter was transformed into a symmetric and unbroke...
Optical trapping of colloidal microparticle arrays in evanescent fields is a relatively new area of ...
Trapping and manipulation of microscopic objects using fiber optical traps is gaining considerable i...
Optical trapping of metal nanoparticles investigates phenomena at the interface of plasmonics and op...
We propose to optically trap nanoparticles utilizing a single nanostructured glass-fiber tip. 3D tra...
Optical trapping of dielectric microparticles is reported using an optical tweezers based on two ori...
We report on the trapping of micrometer colloids using the evanescent wave from a multimode cylindri...
We investigate the manipulation of microscopic and nanoscopic particles using the evanescent optical...
AbstractWe investigate the manipulation of microscopic and nanoscopic particles using the evanescent...
Optical trapping is an established field for movement of micron-size objects and cells. However, tra...
Optical manipulation in the vicinity of ultrathin optical fibres has shown potential across several ...
Interaction of electromagnetic waves with small particles has been extensively investigated for dete...
Plasmonic nanoparticles, typically gold and silver colloids, can be trapped by a highly focused Gaus...
The precise noninvasive optical manipulation of nanometer-sized particles by evanescent fields, inst...
International audienceAdvances in optical trapping design principles have led to tremendous progress...
A stripped no-core optical fiber with a 125 µm diameter was transformed into a symmetric and unbroke...
Optical trapping of colloidal microparticle arrays in evanescent fields is a relatively new area of ...
Trapping and manipulation of microscopic objects using fiber optical traps is gaining considerable i...
Optical trapping of metal nanoparticles investigates phenomena at the interface of plasmonics and op...
We propose to optically trap nanoparticles utilizing a single nanostructured glass-fiber tip. 3D tra...
Optical trapping of dielectric microparticles is reported using an optical tweezers based on two ori...
We report on the trapping of micrometer colloids using the evanescent wave from a multimode cylindri...