The key information about any nanoscale system relates to the orientations and conformations of its parts. Unfortunately, these details are often hidden below the diffraction limit, and elaborate techniques must be used to optically probe them. Here we present imaging of the 3D rotation motion of metal nanorods, restoring the distinct nanorod orientations in the full extent of azimuthal and polar angles. The nanorods imprint their 3D orientation onto the geometric phase and space-variant polarization of the light they scatter. We manipulate the light angular momentum and generate optical vortices that create self-interference images providing the nanorods’ angles via digital processing. After calibration by scanning electron microscopy, we ...
The possibility to generate and measure rotation and torque at the nanoscale is of fundamental inter...
Live cell imaging using metallic nanoparticles as tags is an emerging technique to visualize long an...
Optical manipulation and imaging of nano‐objects with nanometer precision is highly desirable for na...
Gold (Au) nanoparticles, particularly nanorods, are actively employed as imaging probes because of t...
This paper presents a new experiment with which we are able to measure the 3D translational motion o...
Single-particle and single-molecule orientation determination plays a vital role in deciphering nano...
We present a powerful technique to fully characterize individual gold nanorods by using confocal mic...
International audienceAbstract Orientation of nanoscale objects can be measured by examining the pol...
Colorimetric analysis of broadband illumination scattered from isolated gold nanorods and reduced sy...
We developed two types of high-speed angle-resolved imaging methods for single gold nanorods (SAuNRs...
We report an automated single particle tracking technique for tracking the x, y, z coordinates, azim...
AbstractSingle particle tracking is widely used to study protein movement with high spatiotemporal r...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
Highly energetic ions have been previously used to modify the shape of metal nanoparticles embedded ...
The possibility to generate and measure rotation and torque at the nanoscale is of fundamental inter...
Live cell imaging using metallic nanoparticles as tags is an emerging technique to visualize long an...
Optical manipulation and imaging of nano‐objects with nanometer precision is highly desirable for na...
Gold (Au) nanoparticles, particularly nanorods, are actively employed as imaging probes because of t...
This paper presents a new experiment with which we are able to measure the 3D translational motion o...
Single-particle and single-molecule orientation determination plays a vital role in deciphering nano...
We present a powerful technique to fully characterize individual gold nanorods by using confocal mic...
International audienceAbstract Orientation of nanoscale objects can be measured by examining the pol...
Colorimetric analysis of broadband illumination scattered from isolated gold nanorods and reduced sy...
We developed two types of high-speed angle-resolved imaging methods for single gold nanorods (SAuNRs...
We report an automated single particle tracking technique for tracking the x, y, z coordinates, azim...
AbstractSingle particle tracking is widely used to study protein movement with high spatiotemporal r...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
Highly energetic ions have been previously used to modify the shape of metal nanoparticles embedded ...
The possibility to generate and measure rotation and torque at the nanoscale is of fundamental inter...
Live cell imaging using metallic nanoparticles as tags is an emerging technique to visualize long an...
Optical manipulation and imaging of nano‐objects with nanometer precision is highly desirable for na...