Optical superoscillatory imaging, allowing unlabelled far-field super-resolution, has in recent years become reality. Instruments have been built and their super-resolution imaging capabilities demonstrated. The question is no longer whether this can be done, but how well: what resolution is practically achievable? Numerous works have optimised various particular features of superoscillatory spots, but in order to probe the limits of superoscillatory imaging we need to simultaneously optimise all the important spot features: those that define the resolution of the system. We simultaneously optimise spot size and its intensity relative to the sidebands for various fields of view, giving a set of best compromises for use in different imaging ...
Far-field imaging beyond the Rayleigh limit is one of the most important challenges in optics, micro...
Far-field optical microscopy using focused light is an important tool in a number of scientific disc...
Far-field imaging beyond the Rayleigh limit is one of the most important challenges in optics, micro...
Optical superoscillatory imaging, allowing unlabelled far-field super-resolution, has in recent year...
© The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attributi...
Unlabelled super-resolution is the next grand challenge in imaging. Stimulated emission depletion an...
Superoscillation is a promising method to realize superresolution imaging. Nevertheless, in the poin...
Superoscillations are making a growing impact on an ever-increasing number of real-world application...
Superoscillation is the phenomenon where a wave locally oscillates faster than its largest frequency...
Most ideas for achieving super-resolution in optics are based on the recovery of evanescent fields w...
This dataset supports the publication: KATRINE S. ROGERS, KONSTANTINOS N. BOURDAKOS, GUANG HUI YUAN...
Optical superoscillations are rapid, subwavelength spatial variations of the intensity and phase of ...
<p>Suffering from the limited number aperture, a resolution higher than 0.5. cannot be obtained in c...
In this paper, we report a nonscanning optical superresolution imaging method based on a hybrid phas...
We demonstrate a metamaterial superlens: a planar array of discrete subwavelength metamolecules with...
Far-field imaging beyond the Rayleigh limit is one of the most important challenges in optics, micro...
Far-field optical microscopy using focused light is an important tool in a number of scientific disc...
Far-field imaging beyond the Rayleigh limit is one of the most important challenges in optics, micro...
Optical superoscillatory imaging, allowing unlabelled far-field super-resolution, has in recent year...
© The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attributi...
Unlabelled super-resolution is the next grand challenge in imaging. Stimulated emission depletion an...
Superoscillation is a promising method to realize superresolution imaging. Nevertheless, in the poin...
Superoscillations are making a growing impact on an ever-increasing number of real-world application...
Superoscillation is the phenomenon where a wave locally oscillates faster than its largest frequency...
Most ideas for achieving super-resolution in optics are based on the recovery of evanescent fields w...
This dataset supports the publication: KATRINE S. ROGERS, KONSTANTINOS N. BOURDAKOS, GUANG HUI YUAN...
Optical superoscillations are rapid, subwavelength spatial variations of the intensity and phase of ...
<p>Suffering from the limited number aperture, a resolution higher than 0.5. cannot be obtained in c...
In this paper, we report a nonscanning optical superresolution imaging method based on a hybrid phas...
We demonstrate a metamaterial superlens: a planar array of discrete subwavelength metamolecules with...
Far-field imaging beyond the Rayleigh limit is one of the most important challenges in optics, micro...
Far-field optical microscopy using focused light is an important tool in a number of scientific disc...
Far-field imaging beyond the Rayleigh limit is one of the most important challenges in optics, micro...