The control of spatial propagation properties of narrow light beams such as divergence, focusing or imaging are main objectives in optics and photonics. In this letter, we propose and demonstrate experimentally a flat focusing mirror, based on an especially designed dielectric structure without any optical axis. More generally, it also enables imaging any light pattern in reflection. The flat focusing mirror with a transversal invariance can largely increase the applicability of structured photonic materials for light beam propagation control in small-dimension photonic circuits.Peer Reviewe
The use of the generalized Snell’s law opens wide possibilities for the manipulation of transmitted ...
In this letter, we numerically designed and experimentally demonstrated a compact photonic structure...
In turbid media, light gets multiply scattered to an extent that all the information of its propagat...
In this work, we experimentally demonstrate that a thin rectangle dielectric-metal structure can hav...
Recently, the principle of flat focusing based on one-dimensionally chirped dielectric mirrors has b...
We experimentally demonstrate the recently predicted effect of near-field focusing for light beams f...
The paper proposes a new design of an inhomogeneous artificially created photonic crystal lens struc...
Missatge de l'editorial: "This paper was published in Optical letters and is made available as an el...
We propose the design of a dielectric flat lens for visible wavelengths, capable of efficiently focu...
Recently the beam focusing in reflection from chirped dielectric mirror has been proposed and demons...
We propose and demonstrate a novel functionality of chirped mirror for monochromatic light beams: a ...
Flat optical devices based on lithographically patterned sub-wavelength dielectric nano-structures p...
A novel application of chirped dielectric mirrors for narrow beam focalization is proposed and demon...
We report the experimental measurement of the field distribution of the spot light focused by a two-...
A new type of optical element that can focus a cylindrical wave to a point focus (or vice versa) is ...
The use of the generalized Snell’s law opens wide possibilities for the manipulation of transmitted ...
In this letter, we numerically designed and experimentally demonstrated a compact photonic structure...
In turbid media, light gets multiply scattered to an extent that all the information of its propagat...
In this work, we experimentally demonstrate that a thin rectangle dielectric-metal structure can hav...
Recently, the principle of flat focusing based on one-dimensionally chirped dielectric mirrors has b...
We experimentally demonstrate the recently predicted effect of near-field focusing for light beams f...
The paper proposes a new design of an inhomogeneous artificially created photonic crystal lens struc...
Missatge de l'editorial: "This paper was published in Optical letters and is made available as an el...
We propose the design of a dielectric flat lens for visible wavelengths, capable of efficiently focu...
Recently the beam focusing in reflection from chirped dielectric mirror has been proposed and demons...
We propose and demonstrate a novel functionality of chirped mirror for monochromatic light beams: a ...
Flat optical devices based on lithographically patterned sub-wavelength dielectric nano-structures p...
A novel application of chirped dielectric mirrors for narrow beam focalization is proposed and demon...
We report the experimental measurement of the field distribution of the spot light focused by a two-...
A new type of optical element that can focus a cylindrical wave to a point focus (or vice versa) is ...
The use of the generalized Snell’s law opens wide possibilities for the manipulation of transmitted ...
In this letter, we numerically designed and experimentally demonstrated a compact photonic structure...
In turbid media, light gets multiply scattered to an extent that all the information of its propagat...