We demonstrate that a quasi-periodic array of nanoholes in a metal screen can focus light into subwavelength spots in the far-field without contributions from evanescent fields. The subwavelength spots were observed with a conventional optical microscope and mapped to the far-field. We relate the formation of subwavelength light localizations in the far-field to the phenomenon of super-oscillations. This effect offers a new way to achieve subwavelength imaging, which differs from approaches based on the recovery of evanescent fields
We demonstrate a metamaterial superlens: a planar array of discrete subwavelength metamolecules with...
We demonstrate experimental focusing of surface plasmon polaritons beyond the plasmon diffraction li...
Unlabeled super-resolution is the next grand challenge in imaging. Stimulated emission depletion and...
Most ideas for achieving super-resolution in optics are based on the recovery of evanescent fields w...
Here for the first time we demonstrate experimentally and theoretically that the Talbot effect on a ...
We provide the first experimental evidence of focusing light into subwavelength spots by a 2-dimensi...
Optical superoscillations are rapid, subwavelength spatial variations of the intensity and phase of ...
Here for the first time we demonstrate experimentally and theoretically that the Talbot effect on a ...
We demonstrate a conceptually new mechanism for sub-wavelength focusing at optical frequencies based...
We demonstrate a conceptually new mechanism for focusing at optical frequencies based upon the use o...
We report that the Talbot effect on a quasi-crystal arrays of nano-holes may be used to achieve subw...
Superoscillation is the phenomenon where a wave locally oscillates faster than its largest frequency...
We show that arbitrarily small localization of light of prescribed profile can be created within a f...
Unlabelled super-resolution is the next grand challenge in imaging. Stimulated emission depletion an...
A planar array of lenses made from spatially varying plasmonic meta-atoms generates multiple sub-wav...
We demonstrate a metamaterial superlens: a planar array of discrete subwavelength metamolecules with...
We demonstrate experimental focusing of surface plasmon polaritons beyond the plasmon diffraction li...
Unlabeled super-resolution is the next grand challenge in imaging. Stimulated emission depletion and...
Most ideas for achieving super-resolution in optics are based on the recovery of evanescent fields w...
Here for the first time we demonstrate experimentally and theoretically that the Talbot effect on a ...
We provide the first experimental evidence of focusing light into subwavelength spots by a 2-dimensi...
Optical superoscillations are rapid, subwavelength spatial variations of the intensity and phase of ...
Here for the first time we demonstrate experimentally and theoretically that the Talbot effect on a ...
We demonstrate a conceptually new mechanism for sub-wavelength focusing at optical frequencies based...
We demonstrate a conceptually new mechanism for focusing at optical frequencies based upon the use o...
We report that the Talbot effect on a quasi-crystal arrays of nano-holes may be used to achieve subw...
Superoscillation is the phenomenon where a wave locally oscillates faster than its largest frequency...
We show that arbitrarily small localization of light of prescribed profile can be created within a f...
Unlabelled super-resolution is the next grand challenge in imaging. Stimulated emission depletion an...
A planar array of lenses made from spatially varying plasmonic meta-atoms generates multiple sub-wav...
We demonstrate a metamaterial superlens: a planar array of discrete subwavelength metamolecules with...
We demonstrate experimental focusing of surface plasmon polaritons beyond the plasmon diffraction li...
Unlabeled super-resolution is the next grand challenge in imaging. Stimulated emission depletion and...