We describe the application of three-dimensional (3D) scattering interferometric (iSCAT) imaging to the measurement of spatial interaction potentials for nano-objects in solution. We study electrostatically trapped gold particles in a nanofluidic device and present details on axial particle localization in the presence of a strongly reflecting interface. Our results demonstrate high-speed (similar to kHz) particle tracking with subnanometer localization precision in the axial and average 2.5 nm in the lateral dimension. A comparison of the measured levitation heights of trapped particles with the calculated values for traps of various geometries reveals good agreement. Our work demonstrates that iSCAT imaging delivers label-free, high-speed...
Interferometric scattering (iSCAT) microscopy is a powerful tool for label-free sensitive detection ...
Imaging and tracking single nanoparticles using optical microscopy are powerful techniques with many...
We report on optical levitation experiments to probe the interaction of a nanoparticle with a surfac...
We describe the application of three-dimensional (3D) scattering interferometric (iSCAT) imaging to ...
The characterization of particles is crucial in the biomedical research field and can be accomplishe...
Trapping of micro- and nano-objects in solution is of great scientific interest in various fields. O...
International audienceMeeting the nanometre resolution promised by super-resolution microscopy techn...
Single nanoparticle tracking using optical microscopy is a powerful technique with many applications...
Interferometric surfaces enhance light scattering from nanoparticles through constructive interferen...
Single nanoparticle tracking using optical microscopy is a powerful technique with many applications...
Nanoparticles are becoming ubiquitous in many applications including diagnostic assays, drug deliver...
Interferometric scattering microscopy (iSCAT) is an extremely sensitive imaging method based on the ...
We demonstrate stable three-dimensional (3D) single-beam optical trapping of gold nanoparticles with...
Microscopy based on the interferometric detection of light scattered from nanoparticles (iSCAT) was ...
Interferometric methods for detecting the motion of a levitated nanoparticle provide a route to the ...
Interferometric scattering (iSCAT) microscopy is a powerful tool for label-free sensitive detection ...
Imaging and tracking single nanoparticles using optical microscopy are powerful techniques with many...
We report on optical levitation experiments to probe the interaction of a nanoparticle with a surfac...
We describe the application of three-dimensional (3D) scattering interferometric (iSCAT) imaging to ...
The characterization of particles is crucial in the biomedical research field and can be accomplishe...
Trapping of micro- and nano-objects in solution is of great scientific interest in various fields. O...
International audienceMeeting the nanometre resolution promised by super-resolution microscopy techn...
Single nanoparticle tracking using optical microscopy is a powerful technique with many applications...
Interferometric surfaces enhance light scattering from nanoparticles through constructive interferen...
Single nanoparticle tracking using optical microscopy is a powerful technique with many applications...
Nanoparticles are becoming ubiquitous in many applications including diagnostic assays, drug deliver...
Interferometric scattering microscopy (iSCAT) is an extremely sensitive imaging method based on the ...
We demonstrate stable three-dimensional (3D) single-beam optical trapping of gold nanoparticles with...
Microscopy based on the interferometric detection of light scattered from nanoparticles (iSCAT) was ...
Interferometric methods for detecting the motion of a levitated nanoparticle provide a route to the ...
Interferometric scattering (iSCAT) microscopy is a powerful tool for label-free sensitive detection ...
Imaging and tracking single nanoparticles using optical microscopy are powerful techniques with many...
We report on optical levitation experiments to probe the interaction of a nanoparticle with a surfac...