Deuterium gas puff Z-pinch at currents of 2 to 3 mega-ampere
Author:
Publisher
AIP Publishing
Subject
Condensed Matter Physics
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3696859
Reference57 articles.
1. The possibility of producing thermonuclear reactions in a gaseous discharge
2. The possibility of producing thermonuclear reactions in a gaseous discharge
3. Neutron Production in Linear Deuterium Pinches
4. Application of a plasma focus-based source for fast neutron and X-ray radiography
5. Short-Lived PET Radioisotope Production in a Small Plasma Focus Device
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1. Material effects on dynamics in triple-nozzle gas-puff Z pinches;Physical Review E;2022-04-13
2. Production of energetic protons, deuterons, and neutrons up to 60 MeV via disruption of a current-carrying plasma column at 3 MA;New Journal of Physics;2020-10-01
3. Neutron fluence distribution in experiments with 3 MA deuterium gas-puff z-pinch;Physics of Plasmas;2020-07
4. The staged Z-pinch as a potential fusion energy source;Physics of Plasmas;2020-04
5. Study of the Compression of a Condensed Deuterated Target Installed on the Wire Array Axis;Plasma Physics Reports;2019-09
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