Showing posts with label resonant tunneling diodes. Show all posts
Showing posts with label resonant tunneling diodes. Show all posts

Wednesday, November 15, 2017

Abstract-Nonlinear optical detection of terahertz-wave radiation from resonant tunneling diodes




Yuma Takida, Kouji Nawata, Safumi Suzuki, Masahiro Asada, and Hiroaki Minamide

https://www.osapublishing.org/oe/abstract.cfm?uri=oe-25-5-5389&origin=search

The sensitive detection of terahertz (THz)-wave radiation from compact sources at room temperature is crucial for real-world THz-wave applications. Here, we demonstrate the nonlinear optical detection of THz-wave radiation from continuous-wave (CW) resonant tunneling diodes (RTDs) at 0.58, 0.78, and 1.14 THz. The up-conversion process in a MgO:LiNbO3 crystal under the noncollinear phase-matching condition offers efficient wavelength conversion from a THz wave to a near-infrared (NIR) wave that is detected using a commercial NIR photodetector. The minimum detection limit of CW THz-wave power is as low as 5 nW at 1.14 THz, corresponding to 2-aJ energy and 2.7 × 103 photons within the time window of a 0.31-ns pump pulse. Our results show that the input frequency and power of RTD devices can be calibrated by measuring the output wavelength and energy of up-converted waves, respectively. This optical detection technique for compact electronic THz-wave sources will open up a new opportunity for the realization of real-world THz-wave applications.
© 2017 Optical Society of America

Wednesday, November 8, 2017

Abstract- Asymmetrical conductance model to analyze resonant tunneling diode terahertz oscillators


S. Diebold,   M. Fujita,   T. Nagatsuma

http://ieeexplore.ieee.org/document/8058997/

A simple expression for the conductance-voltage characteristics of resonant tunneling diodes (RTD) is presented, which takes the asymmetry of the measured characteristics into account. It allows for a simple and accurate analysis of RTD-based oscillators to optimize them. Moreover, the dynamic capacitance of an RTD oscillator is calculated in order to describe its oscillation frequency. The measured oscillation power and frequency accurately can be described using the presented model and analysis without the need of a circuit simulator.