Single nanoparticle tracking using optical microscopy is a powerful technique with many applications in biology, chemistry, and material sciences. Despite significant advances, localizing objects with nanometric position precision in a scattering environment remains challenging. Applied methods to achieve contrast are dominantly fluorescence based, with fundamental limits in the emitted photon fluxes arising from the excited-state lifetime as well as photobleaching. Here, we show a new four-wave-mixing interferometry technique, whereby the position of a single nonfluorescing gold nanoparticle of 25-nm radius is determined with 16 nm precision in plane and 3 nm axially from rapid single-point measurements at 1-ms acquisition time by exploiti...
Nanoparticles of many varieties are increasingly studied for use in the physical, chemical, and biol...
Gold nanoparticles have been researched for many biomedical applications in diagnostics, theranostic...
We use an interferometric detection scheme to directly detect single gold nanoparticles with a diame...
Single nanoparticle tracking using optical microscopy is a powerful technique with many applications...
Single nanoparticle tracking using optical microscopy is a powerful technique with many applications...
Imaging and tracking single nanoparticles using optical microscopy are powerful techniques with many...
Individual small gold nanoparticles are imaged in 3D background-free with high contrast by four-wave...
We report a wide-field imaging method to rapidly and quantitatively measure the optical extinction c...
Correlative light-electron microscopy (CLEM) requires the availability of robust probes which are vi...
Over the last decade, two fields have dominated the attention of sub-diffraction photonics research:...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
Nanoparticles of many varieties are increasingly studied for use in the physical, chemical, and biol...
Gold nanoparticles have been researched for many biomedical applications in diagnostics, theranostic...
We use an interferometric detection scheme to directly detect single gold nanoparticles with a diame...
Single nanoparticle tracking using optical microscopy is a powerful technique with many applications...
Single nanoparticle tracking using optical microscopy is a powerful technique with many applications...
Imaging and tracking single nanoparticles using optical microscopy are powerful techniques with many...
Individual small gold nanoparticles are imaged in 3D background-free with high contrast by four-wave...
We report a wide-field imaging method to rapidly and quantitatively measure the optical extinction c...
Correlative light-electron microscopy (CLEM) requires the availability of robust probes which are vi...
Over the last decade, two fields have dominated the attention of sub-diffraction photonics research:...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
Nanoparticles of many varieties are increasingly studied for use in the physical, chemical, and biol...
Gold nanoparticles have been researched for many biomedical applications in diagnostics, theranostic...
We use an interferometric detection scheme to directly detect single gold nanoparticles with a diame...