The performance of an ultrathin (thickness < 0.04λ 0) metasurface superoscillatory lens (metaSOL) is experimentally demonstrated in the terahertz (THz) range. The metaSOL is designed using two different hexagonal unit cells to improve the efficiency and properties of the conventional transparent–opaque zoning approach. The focusing metastructure produces, at a frequency f exp = 295 GHz, a sharp focal spot 8.9λ exp away from its output surface with a transversal resolution of 0.52λ exp (≈25% below the resolution limit imposed by diffraction), a power enhancement of 18.2 dB, and very low side lobe level (−13 dB). Resolution below the diffraction limit is demonstrated in a broad fractional operation bandwidth of 18%. The focusing capabilities ...
The focusing of THz waves onto sub-wavelength areas is a crucial issue both for THZ spectroscopy of ...
The focusing of THz waves onto sub-wavelength areas is a crucial issue both for THZ spectroscopy of ...
Super-resolution focusing in the metamaterials for both the propagating and evanescent wave emerging...
In this paper, we design and numerically demonstrate an ultra-thin super-oscillatory metalens with a...
This paper presents a metamaterial-based super-oscillatory lens (SOL) fabricated by photolithography...
In this paper, we design and numerically demonstrate an ultra-thin super-oscillatory metalens with a...
In this paper, we design and numerically demonstrate an ultra-thin super-oscillatory metalens with a...
Ultra-thin focusing meta-lenses based on the metasurface structure with adjustable focal length show...
This paper describes the design and development of a cylindrical super-oscillatory lens (CSOL) for a...
Terahertz (THz) radiation has attached a lot of attention due to its potential applications. The sma...
Metasurfaces can reshape the wavefront in the desired manner by manipulating the phase profile and a...
With the benefits of non–invasive and low radiation, terahertz radiation has shown great potential i...
With the benefits of non–invasive and low radiation, terahertz radiation has shown great potential i...
The development of innovative terahertz (THz) imaging systems has recently moved in the focus of sci...
We present different metamaterial-based optical components that open exciting new ways to deliberate...
The focusing of THz waves onto sub-wavelength areas is a crucial issue both for THZ spectroscopy of ...
The focusing of THz waves onto sub-wavelength areas is a crucial issue both for THZ spectroscopy of ...
Super-resolution focusing in the metamaterials for both the propagating and evanescent wave emerging...
In this paper, we design and numerically demonstrate an ultra-thin super-oscillatory metalens with a...
This paper presents a metamaterial-based super-oscillatory lens (SOL) fabricated by photolithography...
In this paper, we design and numerically demonstrate an ultra-thin super-oscillatory metalens with a...
In this paper, we design and numerically demonstrate an ultra-thin super-oscillatory metalens with a...
Ultra-thin focusing meta-lenses based on the metasurface structure with adjustable focal length show...
This paper describes the design and development of a cylindrical super-oscillatory lens (CSOL) for a...
Terahertz (THz) radiation has attached a lot of attention due to its potential applications. The sma...
Metasurfaces can reshape the wavefront in the desired manner by manipulating the phase profile and a...
With the benefits of non–invasive and low radiation, terahertz radiation has shown great potential i...
With the benefits of non–invasive and low radiation, terahertz radiation has shown great potential i...
The development of innovative terahertz (THz) imaging systems has recently moved in the focus of sci...
We present different metamaterial-based optical components that open exciting new ways to deliberate...
The focusing of THz waves onto sub-wavelength areas is a crucial issue both for THZ spectroscopy of ...
The focusing of THz waves onto sub-wavelength areas is a crucial issue both for THZ spectroscopy of ...
Super-resolution focusing in the metamaterials for both the propagating and evanescent wave emerging...