Title :
Coded-Aperture Imaging Using Photo-Induced Reconfigurable Aperture Arrays for Mapping Terahertz Beams
Author :
Kannegulla, A. ; Jiang, Z. ; Rahman, Syed M. ; Shams, M.I.B. ; Fay, Patrick ; Xing, Huili Grace ; Cheng, L.-J. ; Liu, L.
Author_Institution :
Dept. of Electr. Eng., Univ. of Notre Dame, Notre Dame, IN, USA
Abstract :
We report terahertz coded-aperture imaging using photo-induced reconfigurable aperture arrays on a silicon wafer. The coded aperture was implemented using programmable illumination from a commercially available digital light processing projector. At 590 GHz, each of the array element apertures can be optically turned on and off with a modulation depth of 20 dB and a modulation rate of ~ 1.3 kHz. Prototype demonstrations of 4 ×4 coded-aperture imaging using Hadamard coding have been performed. Continuous THz imaging with 8 ×8 pixels has also been demonstrated, using a slowly moving metal strip as the target. In addition, this technique has been successfully applied to mapping THz beams by using a 6 ×6 aperture array at 590 GHz. The imaging results agree closely with theoretical calculations based on Gaussian beam propagation, demonstrating that this technique is promising for realizing real-time and low-cost terahertz cameras for many applications. The reported approach provides a simple but powerful means to visualize THz beams, which is highly desired in quasi-optical system alignment, quantum-cascade laser design and characterization, and THz antenna characterization.
Keywords :
Gaussian processes; Hadamard codes; antenna arrays; cameras; computerised instrumentation; elemental semiconductors; image coding; optical modulation; optical projectors; quantum cascade lasers; silicon; submillimetre wave antennas; submillimetre wave detectors; terahertz wave detectors; terahertz wave imaging; Gaussian beam propagation; Hadamard coding; Si; THz antenna characterization; digital light processing projector; frequency 590 GHz; gain 20 dB; mapping terahertz beam; optically modulation; photoinduced reconfigurable aperture array; programmable illumination; quantum-cascade laser design; quasioptical system alignment; terahertz camera; terahertz coded-aperture imaging; Apertures; Computer aided instruction; Detectors; Imaging; Laser beams; Modulation; Silicon; THz beams; THz imaging; arrays; coded-aperture;
Journal_Title :
Terahertz Science and Technology, IEEE Transactions on
DOI :
10.1109/TTHZ.2014.2307163