Title :
THz Autocorrelators for ps Pulse Characterization Based on Schottky Diodes and Rectifying Field-Effect Transistors
Author :
Preu, Sascha ; Mittendorff, Martin ; Winnerl, Stephan ; Cojocari, Oleg ; Penirschke, Andreas
Author_Institution :
Dept. of Electr. Eng. & Inf. Technol., Tech. Univ. Darmstadt, Darmstadt, Germany
Abstract :
When operating Schottky diodes and rectifying field-effect transistors in the saturation regime, where they show a sublinear response to incident THz power, they can be used as fast autorcorrelators yielding information on the pulse envelope. We report on autocorrelation measurements at 3.41 THz of high-power THz pulses for determination of the pulse duration and pulse structure. By fringe-resolved measurements, the THz frequency of the pulse is also obtained. We develop a theoretical model for the rectification process and compare the performance of an antenna-coupled Schottky diode to a large-area field-effect transistor rectifier. While the Schottky diode saturates earlier and can therefore be used for autocorrelation measurements at lower input power, antenna-less large-area field-effect transistors can be used for highest power levels-even at free electron lasers-and turn out to be very robust.
Keywords :
Schottky diodes; correlators; field effect transistors; pulse circuits; rectifiers; terahertz wave devices; THz autocorrelator; antenna-coupled Schottky diode; electron laser; frequency 3.41 THz; fringe-resolved measurement; high-power THz pulse; ps pulse characterization; pulse duration; pulse structure; rectifying field-effect transistor; sublinear response; terahertz frequency; Antenna measurements; Correlation; Detectors; Frequency measurement; Pulse measurements; Schottky diodes; Shape; Autocorrelation; Schottky diode; field-effect transistor; free electron laser; terahertz (THz);
Journal_Title :
Terahertz Science and Technology, IEEE Transactions on
DOI :
10.1109/TTHZ.2015.2482943