DocumentCode
1880206
Title
Monte Carlo simulation of THz multipliers
Author
East, J. ; Blakey, P.
Author_Institution
Center for Space Terahertz Technol., Michigan Univ., Ann Arbor, MI, USA
fYear
1997
fDate
4-6 Aug 1997
Firstpage
59
Lastpage
68
Abstract
Schottky barrier diode frequency multipliers are critical components in submm and THz space based Earth observation systems. As the operating frequency of these multipliers has increased, the agreement between design predictions and experimental results has become poorer. The multiplier design is usually based on a nonlinear model using a form of harmonic balance and a model for the Schottky barrier diode. Conventional voltage dependent lumped element models do a poor job of predicting THz frequency performance. This paper describes a large signal Monte Carlo simulation of Schottky barrier multipliers. The simulation is a time dependent particle field Monte Carlo simulation with Ohmic and Schottky barrier boundary conditions included that has been combined with a fixed point solution for the nonlinear circuit interaction. The results point out some important time constants in varactor operation and describe the effects of current saturation and nonlinear resistances on multiplier operation
Keywords
Monte Carlo methods; Schottky diodes; atmospheric measuring apparatus; nonlinear network analysis; remote sensing; space vehicle electronics; submillimetre wave diodes; varactors; Monte Carlo simulation; Schottky barrier boundary conditions; Schottky barrier diode frequency multipliers; current saturation; fixed point solution; nonlinear circuit interaction; nonlinear resistances; space based Earth observation systems; time constants; time dependent particle field simulation; varactor operation; Schottky diode frequency converters;
fLanguage
English
Publisher
ieee
Conference_Titel
High Speed Semiconductor Devices and Circuits, 1997. Proceedings., 1997 IEEE/Cornell Conference on Advanced Concepts in
Conference_Location
Ithaca, NY
ISSN
1079-4700
Print_ISBN
0-7803-3970-3
Type
conf
DOI
10.1109/CORNEL.1997.649343
Filename
649343
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