We demonstrate a form of near-field terahertz (THz) imaging that is compatible with compressed sensing algorithms. By spatially photomodulating THz pulses using a set of shaped binary optical patterns and employing a 6-μm-thick silicon wafer, we are able to reconstruct THz images of an object placed on the exit interface of the wafer. A single-element detector is used to measure the electric field amplitude of transmitted THz radiation for each projected pattern, with the ultra-thin wafer allowing us to access the THz evanescent near fields to achieve a spatial resolution of ∼9 μm∼9 μm
Terahertz imaging looks set to become an integral part of future applications from semiconductor qua...
We present a near-field, simultaneous multiple pixel subwavelength THz transmission imaging device b...
Terahertz technologies recently emerged as outstanding candidates for a variety of applications in s...
This is the author accepted manuscript. The final version is available from Optical Society of Ameri...
Terahertz (THz) imaging can see through otherwise opaque materials. However, because of the long wav...
Terahertz (THz) imaging has the ability to see through otherwise opaque materials. However, due to t...
Near-field imaging with terahertz (THz) waves is emerging as a powerful technique for fundamental re...
High spatial resolution imaging is implemented with a novel collection mode near-field terahertz (TH...
Compressed sensing (CS) techniques allow for faster imaging when combined with scan architectures, w...
Terahertz (THz) radiation is poised to have an essential role in many imaging applications, from ind...
Most terahertz (THz) time-domain (pulsed) imaging experiments that have been performed by raster sca...
The spatial resolution of conventional terahertz (THz) images is limited by the wavelength of THz ra...
We demonstrate near-field imaging capabilities of a conical waveguide without cutoff using broadband...
Terahertz (THz) radiation has unique properties such as non-ionization, energy level matching with m...
Near-field imaging techniques at terahertz (THz) frequencies are severely restricted by diffraction....
Terahertz imaging looks set to become an integral part of future applications from semiconductor qua...
We present a near-field, simultaneous multiple pixel subwavelength THz transmission imaging device b...
Terahertz technologies recently emerged as outstanding candidates for a variety of applications in s...
This is the author accepted manuscript. The final version is available from Optical Society of Ameri...
Terahertz (THz) imaging can see through otherwise opaque materials. However, because of the long wav...
Terahertz (THz) imaging has the ability to see through otherwise opaque materials. However, due to t...
Near-field imaging with terahertz (THz) waves is emerging as a powerful technique for fundamental re...
High spatial resolution imaging is implemented with a novel collection mode near-field terahertz (TH...
Compressed sensing (CS) techniques allow for faster imaging when combined with scan architectures, w...
Terahertz (THz) radiation is poised to have an essential role in many imaging applications, from ind...
Most terahertz (THz) time-domain (pulsed) imaging experiments that have been performed by raster sca...
The spatial resolution of conventional terahertz (THz) images is limited by the wavelength of THz ra...
We demonstrate near-field imaging capabilities of a conical waveguide without cutoff using broadband...
Terahertz (THz) radiation has unique properties such as non-ionization, energy level matching with m...
Near-field imaging techniques at terahertz (THz) frequencies are severely restricted by diffraction....
Terahertz imaging looks set to become an integral part of future applications from semiconductor qua...
We present a near-field, simultaneous multiple pixel subwavelength THz transmission imaging device b...
Terahertz technologies recently emerged as outstanding candidates for a variety of applications in s...