This paper describes the design and development of a cylindrical super-oscillatory lens (CSOL) for applications in the sub-terahertz frequency range, which are especially ideal for industrial inspection of films using terahertz (THz) and millimeter waves. Product inspections require high resolution (same as inspection with visible light), long working distance, and long depth of focus (DOF). However, these are difficult to achieve using conventional THz components due to diffraction limits. Here, we present a numerical approach in designing a 100 mm × 100 mm CSOL with optimum properties and performance for 0.1 THz (wavelength λ = 3 mm). Simulations show that, at a focal length of 70 mm (23.3λ), the focused beam by the optimized CSOL is a th...
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...
A THz time domain imaging system is optimized and analyzed with ZEMAX. The requirements to the optic...
This paper presents a metamaterial-based super-oscillatory lens (SOL) fabricated by photolithography...
The performance of an ultrathin (thickness < 0.04λ 0) metasurface superoscillatory lens (metaSOL) is...
In this paper, we design and numerically demonstrate an ultra-thin super-oscillatory metalens with a...
Terahertz (THz) imaging techniques are attractive for a wide range of applications, such as non-dest...
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...
A terahertz (THz) time domain imaging system is analyzed and optimized with standard optical design ...
Imaging applications at terahertz frequencies are, in general, limited to relatively low spatial res...
[EN] A 3D printer was used to realize custom-made diffractive THz lenses. After testing several mate...
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 ...
The use of the millimeter-wave and terahertz (THz) systems are becoming very important in various sc...
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...
A THz time domain imaging system is optimized and analyzed with ZEMAX. The requirements to the optic...
This paper presents a metamaterial-based super-oscillatory lens (SOL) fabricated by photolithography...
The performance of an ultrathin (thickness < 0.04λ 0) metasurface superoscillatory lens (metaSOL) is...
In this paper, we design and numerically demonstrate an ultra-thin super-oscillatory metalens with a...
Terahertz (THz) imaging techniques are attractive for a wide range of applications, such as non-dest...
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...
A terahertz (THz) time domain imaging system is analyzed and optimized with standard optical design ...
Imaging applications at terahertz frequencies are, in general, limited to relatively low spatial res...
[EN] A 3D printer was used to realize custom-made diffractive THz lenses. After testing several mate...
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 ...
The use of the millimeter-wave and terahertz (THz) systems are becoming very important in various sc...
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...
A THz time domain imaging system is optimized and analyzed with ZEMAX. The requirements to the optic...