We report the first demonstration of a mid-IR reflection-based flat lens with high efficiency and near diffraction-limited focusing. Focusing efficiency as high as 80%, in good agreement with simulations (83%), has been achieved at 45° incidence angle at λ = 4.6 μm. The off-axis geometry considerably simplifies the optical arrangement compared to the common geometry of normal incidence in reflection mode which requires beam splitters. Simulations show that the effects of incidence angle are small compared to parabolic mirrors with the same NA. The use of single-step photolithography allows large scale fabrication. Such a device is important in the development of compact telescopes, microscopes, and spectroscopic designs
Reflectarrays are traditionally passive, planar microstrip antenna devices designed for reflected ph...
Scientists and laymen alike have always been fascinated by the ability of lenses and mirrors to cont...
Metasurfaces have the ability to flexibly control the light wavefront, and they are expected to fill...
We report the first demonstration of a mid-IR reflection-based flat lens with high efficiency and ne...
A limiting factor in the development of mid-infrared optics is the lack of abundant materials that a...
Integrated photonic circuits and infrared imaging systems demand compact optical components. Dielect...
Light emitted from single-mode semiconductor lasers generally has large divergence angles, and high ...
Metasurfaces have revolutionized the definition of compact optics. Using subwavelength periodic stru...
Metasurfaces-based flat optics, which can make use of existing foundry planar technology for high-th...
Published 1 May 2017We demonstrate a terahertz flat lens based on tri-layer metasurfaces allowing fo...
A metasurface lens (meta-lens) bends light using nanostructures on a flat surface. Macroscopic meta-...
This paper reports an ultrathin flat parabolic reflector to focus a laser beam of 1.47 mu m waveleng...
Fabricating metasurfaces over large areas at low costs remains a critical challenge to their practic...
Breaking the so-called diffraction limit on the resolution of optical devices and achieving subwavel...
Metamaterials, Metadevices, and Metasystems (2018: San Diego; United States)Focal plane arrays (FPAs...
Reflectarrays are traditionally passive, planar microstrip antenna devices designed for reflected ph...
Scientists and laymen alike have always been fascinated by the ability of lenses and mirrors to cont...
Metasurfaces have the ability to flexibly control the light wavefront, and they are expected to fill...
We report the first demonstration of a mid-IR reflection-based flat lens with high efficiency and ne...
A limiting factor in the development of mid-infrared optics is the lack of abundant materials that a...
Integrated photonic circuits and infrared imaging systems demand compact optical components. Dielect...
Light emitted from single-mode semiconductor lasers generally has large divergence angles, and high ...
Metasurfaces have revolutionized the definition of compact optics. Using subwavelength periodic stru...
Metasurfaces-based flat optics, which can make use of existing foundry planar technology for high-th...
Published 1 May 2017We demonstrate a terahertz flat lens based on tri-layer metasurfaces allowing fo...
A metasurface lens (meta-lens) bends light using nanostructures on a flat surface. Macroscopic meta-...
This paper reports an ultrathin flat parabolic reflector to focus a laser beam of 1.47 mu m waveleng...
Fabricating metasurfaces over large areas at low costs remains a critical challenge to their practic...
Breaking the so-called diffraction limit on the resolution of optical devices and achieving subwavel...
Metamaterials, Metadevices, and Metasystems (2018: San Diego; United States)Focal plane arrays (FPAs...
Reflectarrays are traditionally passive, planar microstrip antenna devices designed for reflected ph...
Scientists and laymen alike have always been fascinated by the ability of lenses and mirrors to cont...
Metasurfaces have the ability to flexibly control the light wavefront, and they are expected to fill...