2007 IEEE 34th International Conference on Plasma Science (ICOPS) 2007
DOI: 10.1109/ppps.2007.4345943
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An Overview of Pulse Compression and Power Flow in the Upgraded Z Pulsed Power Driver

Abstract: The Z pulsed power driver at Sandia National Laboratories is used to develop high energy density z-pinch x-ray sources for inertial confinement fusion research and radiation effects testing, and drive megabar pressures in material samples for equation of state studies. The pulsed power system is in the process of being replaced, improving reliability and increasing energy delivered to the load.The upgraded pulsed power system will deliver more than nine megajoules of forward wave energy in the first one hundre… Show more

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Cited by 23 publications
(12 citation statements)
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“…We conducted a series of shock compression experiments to measure the Hugoniot using Sandia's Z Machine. The Z Machine is a pulsed power source capable of delivering ∼20 MA current pulses over a few 100 ns to a target (Matzen, ; Savage et al, ; Spielman et al, ). The large current produces a strong magnetic field, and the combined current and magnetic field generate a Lorentz force, F = J × B , capable of accelerating an aluminum flyer plate up to 40 km/s.…”
Section: Methodsmentioning
confidence: 99%
“…We conducted a series of shock compression experiments to measure the Hugoniot using Sandia's Z Machine. The Z Machine is a pulsed power source capable of delivering ∼20 MA current pulses over a few 100 ns to a target (Matzen, ; Savage et al, ; Spielman et al, ). The large current produces a strong magnetic field, and the combined current and magnetic field generate a Lorentz force, F = J × B , capable of accelerating an aluminum flyer plate up to 40 km/s.…”
Section: Methodsmentioning
confidence: 99%
“…1. Briefly, the experiments were conducted using Sandia National Laboratories's Z-machine (Savage et al, 2007), which is a pulsed power driver that can deliver massive electrical currents (of the order of 20 MA) over very short timescales (of the order of 1 μs). These currents were forced to flow along an aluminium (Al) panel, producing a large magnetic pressure which drives a time-dependent stress wave (impulse) into the system.…”
Section: Experimental Configuration and Modellingmentioning
confidence: 99%
“…The high-precision data constrain the Hugoniot at multi-Mbar pressures, and the DFT and QMC results further elucidate information on the phase boundaries. This work provides accurate EOS data at extreme conditions and furthermore reveals lower limits of the relative velocity required in the giant impact scenario for moon formation.To attain planetary impact conditions, we performed a series of shock compression experiments using the Sandia Z-Machine [27]. The Z-machine is a pulsed power system capable of producing shaped current pulses and induced magnetic fields in excess of 20 MA and 10 MG respectively.…”
mentioning
confidence: 99%
“…To attain planetary impact conditions, we performed a series of shock compression experiments using the Sandia Z-Machine [27]. The Z-machine is a pulsed power system capable of producing shaped current pulses and induced magnetic fields in excess of 20 MA and 10 MG respectively.…”
mentioning
confidence: 99%