A Primer on Pulsed Power and Linear Transformer Drivers for High Energy Density Physics Applications
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The objectives of this tutorial are as follows: 1) to help students and researchers develop a basic understanding of how pulsed-power systems are used to create high-energy-density (HED) matter
2) to develop a basic understanding of a new, compact, and efficient pulsed-power technology called linear transformer drivers (LTDs)
3) to understand why LTDs are an attractive technology for driving HED physics (HEDP) experiments
4) to contrast LTDs with the more traditional Marx-generator/ pulse-forming-line approach to driving HEDP experiments
and 5) to briefly review the history of LTD technology as well as some of the LTD-driven HEDP research presently underway at universities and research laboratories across the globe. This invited tutorial is part of the Mini-Course on Charged Particle Beams and High-Powered Pulsed Sources, held in conjunction with the 44th International Conference on Plasma Science in May of 2017.
2) to develop a basic understanding of a new, compact, and efficient pulsed-power technology called linear transformer drivers (LTDs)
3) to understand why LTDs are an attractive technology for driving HED physics (HEDP) experiments
4) to contrast LTDs with the more traditional Marx-generator/ pulse-forming-line approach to driving HEDP experiments
and 5) to briefly review the history of LTD technology as well as some of the LTD-driven HEDP research presently underway at universities and research laboratories across the globe. This invited tutorial is part of the Mini-Course on Charged Particle Beams and High-Powered Pulsed Sources, held in conjunction with the 44th International Conference on Plasma Science in May of 2017.
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McBride, R. D., Stygar, W. A., Cuneo, M. E., Sinars, D. B., Mazarakis, M. G., Leckbee, J. J., ... Gilgenbach, R. M. (2018). A Primer on Pulsed Power and Linear Transformer Drivers for High Energy Density Physics Applications. IEEE Transactions on Plasma Science, 46(11), 3928-3967. doi:10.1109/tps.2018.2870099
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0093-3813
