Near-field optics and superlenses for imaging beyond Abbe’s diffraction limit are reviewed. A comprehensive and contemporary background is given on scanning near-field microscopy and superlensing. Attention is brought to recent research leveraging scanning near-field optical microscopy with superlenses for new nano-imaging capabilities. Future research directions are explored for realizing the goal of low-cost and high-performance sub-diffraction-limited imaging systems
The fabrication process as well as the optical characterization of a Far-field Superlens (FSL) is pr...
In this paper we review the basics of optical investigations with a spatial resolution beyond the di...
In this paper we review the basics of optical investigations with a spatial resolution beyond the di...
© 2016 Author(s). Near-field optics and superlenses for imaging beyond Abbe\u27s diffraction limit a...
We report that two-dimensional (2D) sub-diffraction-limited images can be theoretically reconstructe...
Far-field optical lens resolution is fundamentally limited by diffraction, which typically is about ...
Contrary to the conventional near-field superlensing, subwavelength superlens imaging is experimenta...
The revolutionary development of scanning probe microscopy has made the imaging of objects at molecu...
Breaking the diffraction limit for the resolution of conventional optical systems has long been the ...
International audienceSince the description of diffraction from the seventeenth century and the deve...
Conventional optics suffer from a fundamental resolution limit due to the nature of light. The near-...
Overcoming the classical diffraction limit in optical microscopy is known to be achievable by a vari...
Far-field optical lens resolution is fundamentally limited by diffraction, which typically is about ...
Recent theory has predicted a superlens that is capable of producing sub–diffraction-limited images....
Recent theory has predicted a superlens that is capable of producing sub–diffraction-limited images....
The fabrication process as well as the optical characterization of a Far-field Superlens (FSL) is pr...
In this paper we review the basics of optical investigations with a spatial resolution beyond the di...
In this paper we review the basics of optical investigations with a spatial resolution beyond the di...
© 2016 Author(s). Near-field optics and superlenses for imaging beyond Abbe\u27s diffraction limit a...
We report that two-dimensional (2D) sub-diffraction-limited images can be theoretically reconstructe...
Far-field optical lens resolution is fundamentally limited by diffraction, which typically is about ...
Contrary to the conventional near-field superlensing, subwavelength superlens imaging is experimenta...
The revolutionary development of scanning probe microscopy has made the imaging of objects at molecu...
Breaking the diffraction limit for the resolution of conventional optical systems has long been the ...
International audienceSince the description of diffraction from the seventeenth century and the deve...
Conventional optics suffer from a fundamental resolution limit due to the nature of light. The near-...
Overcoming the classical diffraction limit in optical microscopy is known to be achievable by a vari...
Far-field optical lens resolution is fundamentally limited by diffraction, which typically is about ...
Recent theory has predicted a superlens that is capable of producing sub–diffraction-limited images....
Recent theory has predicted a superlens that is capable of producing sub–diffraction-limited images....
The fabrication process as well as the optical characterization of a Far-field Superlens (FSL) is pr...
In this paper we review the basics of optical investigations with a spatial resolution beyond the di...
In this paper we review the basics of optical investigations with a spatial resolution beyond the di...