A fast noninvasive method based on scattering from a focused radially polarized light to detect and localize subwavelength nanoparticles on a substrate is presented. The technique relies on polarization matching in the far field between scattered and spurious reflected fields. Results show a localization uncertainty of ?10?4?2 is possible for a particle of area ??2/16. The effect of simple pupil shaping is also shown.ImPhys/Imaging PhysicsApplied Science
Structure of the near-field intensity and polarization distributions, the latter is described with t...
-We investigate, by simulations and experiments, the light scattering of small particles trapped in ...
Electromagnetic metasurfaces are broadly defined as optically thin layersthat are structured on the ...
We demonstrate the far field detection of low-contrast nanoparticles on surfaces using a technique t...
We have measured local electric field polarization vectors in 3-dimensional space on the nanoscale. ...
Improving the image quality of small particles is a classic problem and especially challenging when ...
We propose a scheme to retrieve the size parameters of a nanoparticle on a glass substrate at a scal...
Precise position sensing of a nanoparticle or a biomolecule is of paramount importance for the field...
We propose a scheme to extend the measuring range of a transverse displacement sensor by exploiting ...
The use of optics to detect ultra-subwavelength features embedded within structures is a hot topic f...
When a particle is illuminated by a beam of light it will scatter and redistribute the light in all ...
Recently, it was shown that vector beams can be utilized for fast kinematic sensing via measurements...
Controlling the propagation and coupling of light to sub-wavelength antennas is a crucial prerequisi...
The interaction of photons with metallic nanoparticles is important to a number of emerging nanotech...
In this work, we theoretically show that the deep subwavelength objects located on a dielectric subs...
Structure of the near-field intensity and polarization distributions, the latter is described with t...
-We investigate, by simulations and experiments, the light scattering of small particles trapped in ...
Electromagnetic metasurfaces are broadly defined as optically thin layersthat are structured on the ...
We demonstrate the far field detection of low-contrast nanoparticles on surfaces using a technique t...
We have measured local electric field polarization vectors in 3-dimensional space on the nanoscale. ...
Improving the image quality of small particles is a classic problem and especially challenging when ...
We propose a scheme to retrieve the size parameters of a nanoparticle on a glass substrate at a scal...
Precise position sensing of a nanoparticle or a biomolecule is of paramount importance for the field...
We propose a scheme to extend the measuring range of a transverse displacement sensor by exploiting ...
The use of optics to detect ultra-subwavelength features embedded within structures is a hot topic f...
When a particle is illuminated by a beam of light it will scatter and redistribute the light in all ...
Recently, it was shown that vector beams can be utilized for fast kinematic sensing via measurements...
Controlling the propagation and coupling of light to sub-wavelength antennas is a crucial prerequisi...
The interaction of photons with metallic nanoparticles is important to a number of emerging nanotech...
In this work, we theoretically show that the deep subwavelength objects located on a dielectric subs...
Structure of the near-field intensity and polarization distributions, the latter is described with t...
-We investigate, by simulations and experiments, the light scattering of small particles trapped in ...
Electromagnetic metasurfaces are broadly defined as optically thin layersthat are structured on the ...