Improving the image quality of small particles is a classic problem and especially challenging when the distance between particles are below the optical diffraction limit. We propose a imaging system illuminated with radially polarized light combined with a suitable substrate that contains a thin dielectric layer to demonstrate that the imaging quality can be enhanced. The coupling between the evanescent wave produced in a designed thin dielectric layer, the small particles and the propagating wave forms a mechanism to transfer sub-wavelength information about the particles to the far field. The smallest distinguished distance reaches to 0.634λ, when the imaging system is composed of a high numerical aperture (NA=0.9) lens and the illuminat...
The Rayleigh criterion explains the diffraction limit and provides guidance for improving the perfor...
We present a theory stating how to overcome the classical Rayleigh-resolution limit. It is based upo...
Most ideas for achieving super-resolution in optics are based on the recovery of evanescent fields w...
The classical problem of subwavelength particle detection on a flat surface is especially challengin...
The last decade has seen numerous efforts to achieve imaging resolution beyond that of the Abbe-Rayl...
A fast noninvasive method based on scattering from a focused radially polarized light to detect and ...
International audienceIt is shown that the resolution of virtual images of dye-doped dielectric nano...
High-refractive index dielectric microspheres positioned within the field of view of a microscope ob...
The past decade has seen numerous efforts to achieve imaging resolution beyond that of the Abbe-Rayl...
Publisher Copyright: © 2022 Optica Publishing GroupIn this work we report a theoretical study of the...
It was predicted a few years ago that a medium with negative index of refraction would allow for per...
Because of the wave nature of light, image resolution is limited by the diffraction effects of the f...
Progress in the emerging areas of science and technology, such as bio- and nano-technologies, depen...
The past decade has seen numerous efforts to achieve imaging resolution beyond that of the Abbe-Rayl...
The limit imposed intrinsically by the diffraction of electromagnetic waves has been extensively stu...
The Rayleigh criterion explains the diffraction limit and provides guidance for improving the perfor...
We present a theory stating how to overcome the classical Rayleigh-resolution limit. It is based upo...
Most ideas for achieving super-resolution in optics are based on the recovery of evanescent fields w...
The classical problem of subwavelength particle detection on a flat surface is especially challengin...
The last decade has seen numerous efforts to achieve imaging resolution beyond that of the Abbe-Rayl...
A fast noninvasive method based on scattering from a focused radially polarized light to detect and ...
International audienceIt is shown that the resolution of virtual images of dye-doped dielectric nano...
High-refractive index dielectric microspheres positioned within the field of view of a microscope ob...
The past decade has seen numerous efforts to achieve imaging resolution beyond that of the Abbe-Rayl...
Publisher Copyright: © 2022 Optica Publishing GroupIn this work we report a theoretical study of the...
It was predicted a few years ago that a medium with negative index of refraction would allow for per...
Because of the wave nature of light, image resolution is limited by the diffraction effects of the f...
Progress in the emerging areas of science and technology, such as bio- and nano-technologies, depen...
The past decade has seen numerous efforts to achieve imaging resolution beyond that of the Abbe-Rayl...
The limit imposed intrinsically by the diffraction of electromagnetic waves has been extensively stu...
The Rayleigh criterion explains the diffraction limit and provides guidance for improving the perfor...
We present a theory stating how to overcome the classical Rayleigh-resolution limit. It is based upo...
Most ideas for achieving super-resolution in optics are based on the recovery of evanescent fields w...