DocumentCode :
1599142
Title :
Optimized radial-transmission-line impedance transformer for a petawatt-class pulsed-power accelerator
Author :
Bennett, Nichelle ; Welch, Dale R. ; Rose, David V. ; Stygar, William A.
Author_Institution :
Voss Sci., Albuquerque, NM, USA
fYear :
2013
Firstpage :
1
Lastpage :
1
Abstract :
Three-dimensional fully electromagnetic (EM) models are being used to optimize the design of a petawatt-class pulsepower accelerator.1,2 In this design, a cylindrical array of linear-transformer-driver (LTD) modules3 feed power into radial-transmission-line impedance transformers followed by a vacuum line and convolute section which delivers the combined current to the load.1 In the limit of small ratio of pulse width to one-way wave transit time, we have previously demonstrated that transport efficiency is maximized when the impedance profile is exponential but deviates for increasing ratio.4 We build on that result here with the construction of a virtual accelerator that includes a 3D EM model of a realistic next-generation design for the accelerator´s impedance transformer, and circuit models for the LTD drive circuits, vacuum magnetically insulated transmission lines, and load. Variable timing for each LTD module will enable pulse shaping.
Keywords :
accelerator magnets; impedance convertors; particle accelerators; pulse shaping; pulsed power supplies; transmission lines; 3D EM model; LTD drive circuits; LTD module cylindrical array; accelerator impedance transformer; circuit models; convolute section; impedance profile; linear-transformer-driver module cylindrical array; one-way wave transit time; optimized radial-transmission-line impedance transformer; petawatt-class pulsed-power accelerator design; pulse shaping; realistic next-generation design; small pulse width ratio; three-dimensional fully EM models; three-dimensional fully electromagnetic models; transport efficiency; vacuum line; vacuum magnetically insulated transmission lines; vacuum magnetically insulated transmission load; variable LTD module timing; virtual accelerator construction; Acceleration; Impedance; Integrated circuit modeling; Laboratories; Load modeling; Power transformer insulation; Solid modeling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Science (ICOPS), 2013 Abstracts IEEE International Conference on
Conference_Location :
San Francisco, CA
ISSN :
0730-9244
Type :
conf
DOI :
10.1109/PLASMA.2013.6635103
Filename :
6635103
Link To Document :
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