Terahertz backward wave oscillator circuits

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Publication Type dissertation
School or College College of Engineering
Department Electrical & Computer Engineering
Author Oviedo Vela, Guillermo Antonio
Title Terahertz backward wave oscillator circuits
Date 2010-08
Description This work focuses on increasing the electric field mode-electron beam interaction in terahertz backward-wave oscillators through increasing the interaction impedance of the slow wave circuit. In a backward wave oscillator (BWO) or a traveling wave tube (TWT), the electric field traveling in the waveguide interacts with an electron beam grazing or piercing the electric eld of a slow wave circuit and transfers energy from the beam to the circuit mode. The mechanism of this interaction is analyzed and the traditional model is adapted to provide one that is scalable to terahertz frequencies. The efficiency of the BWO can be enhanced by improving the interaction between the beam and the circuit modes, utilizing beam sources with greater current densities and using larger magnetic fields. This work presents the results on the modeling, fabrication and performance of the mode-piercing and mode-grazing slow wave circuits studied.
Type Text
Publisher University of Utah
Subject Backward-wave oscillator; Slow-wave circuit; Terahertz; Travelling-wave tube
Subject LCSH Backward-wave tubes; Oscillators, Electric
Dissertation Institution University of Utah
Dissertation Name PhD
Language eng
Rights Management ©Guillermo Antonio Oviedo Vela
Format Medium application/pdf
Format Extent 6,579,895 bytes
Source Original in Marriott Library Special Collections, TK7.5 2010 .O885
ARK ark:/87278/s6p562z3
Setname ir_etd
ID 192366
Reference URL https://collections.lib.utah.edu/ark:/87278/s6p562z3
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