Diffraction gratings disperse light in a rainbow of colors with the opposite order than refractive prisms, a phenomenon known as negative dispersion. While refractive dispersion can be controlled via material refractive index, diffractive dispersion is fundamentally an interference effect dictated by geometry. Here we show that this fundamental property can be altered using dielectric metasurfaces, and we experimentally demonstrate diffractive gratings and focusing mirrors with positive, zero, and hyper-negative dispersion. These optical elements are implemented using a reflective metasurface composed of dielectric nano-posts that provide simultaneous control over phase and its wavelength derivative. In addition, as a first practical applic...
The use of diffractive optical elements (DOEs) in broadband optical systems can often significantly ...
<p>Intense developments in optical metamaterials have led to a renaissance in several optics fields....
Metasurfaces are two-dimensional arrangements of optical scatterers rationally arranged to control o...
Diffractive optical devices have many applications in various fields of optics. A fundamental proper...
Diffractive optical devices have many applications in various fields of optics. A fundamental proper...
Diffractive optical devices follow a negative chromatic dispersion dictated by device function. Here...
Diffractive optical devices follow a negative chromatic dispersion dictated by device function. Here...
We introduce a technique for engineering the chromatic dispersion of metasurfaces using dispersive m...
We introduce a technique for engineering the chromatic dispersion of metasurfaces using dispersive m...
During the past few years, metasurfaces have been used to demonstrate optical elements and systems w...
Metasurfaces are nano-structured devices composed of arrays of subwavelength scatterers (or meta-at...
Metasurfaces are ultrathin optical structures that manipulate optical wavefronts. Most metasurface d...
Metasurfaces are ultrathin optical structures that manipulate optical wavefronts. Most metasurface d...
During the past few years, metasurfaces have been used to demonstrate optical elements and systems w...
Metasurfaces are two-dimensional arrangements of optical scatterers rationally arranged to control o...
The use of diffractive optical elements (DOEs) in broadband optical systems can often significantly ...
<p>Intense developments in optical metamaterials have led to a renaissance in several optics fields....
Metasurfaces are two-dimensional arrangements of optical scatterers rationally arranged to control o...
Diffractive optical devices have many applications in various fields of optics. A fundamental proper...
Diffractive optical devices have many applications in various fields of optics. A fundamental proper...
Diffractive optical devices follow a negative chromatic dispersion dictated by device function. Here...
Diffractive optical devices follow a negative chromatic dispersion dictated by device function. Here...
We introduce a technique for engineering the chromatic dispersion of metasurfaces using dispersive m...
We introduce a technique for engineering the chromatic dispersion of metasurfaces using dispersive m...
During the past few years, metasurfaces have been used to demonstrate optical elements and systems w...
Metasurfaces are nano-structured devices composed of arrays of subwavelength scatterers (or meta-at...
Metasurfaces are ultrathin optical structures that manipulate optical wavefronts. Most metasurface d...
Metasurfaces are ultrathin optical structures that manipulate optical wavefronts. Most metasurface d...
During the past few years, metasurfaces have been used to demonstrate optical elements and systems w...
Metasurfaces are two-dimensional arrangements of optical scatterers rationally arranged to control o...
The use of diffractive optical elements (DOEs) in broadband optical systems can often significantly ...
<p>Intense developments in optical metamaterials have led to a renaissance in several optics fields....
Metasurfaces are two-dimensional arrangements of optical scatterers rationally arranged to control o...