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Dr. Andrew James Porwitzky
Dr. Andrew James Porwitzky
Verified email at sandia.gov - Homepage
Title
Cited by
Cited by
Year
Review of pulsed power-driven high energy density physics research on Z at Sandia
DB Sinars, MA Sweeney, CS Alexander, DJ Ampleford, T Ao, ...
Physics of Plasmas 27 (7), 2020
2462020
Modeling of the plasma-propellant interaction
AJ Porwitzky, M Keidar, ID Boyd
IEEE transactions on magnetics 43 (1), 313-317, 2006
362006
Comparison between geometrically focused pulses versus filaments in femtosecond laser ablation of steel and titanium alloys
A Valenzuela, C Munson, A Porwitzky, M Weidman, M Richardson
Applied Physics B 116, 485-491, 2014
322014
On the Mechanism of Energy Transfer in the Plasma‐Propellant Interaction
AJ Porwitzky, M Keidar, ID Boyd
Propellants, Explosives, Pyrotechnics: An International Journal Dealing with …, 2007
302007
Estimation of stagnation performance metrics in magnetized liner inertial fusion experiments using Bayesian data assimilation
PF Knapp, ME Glinsky, MA Schaeuble, CA Jennings, M Evans, J Gunning, ...
Physics of Plasmas 29 (5), 2022
252022
Numerical parametric study of the capillary plasma source for electrothermal chemical guns
AJ Porwitzky, M Keidar, ID Boyd
2008 14th Symposium on Electromagnetic Launch Technology, 1-4, 2008
222008
Uncertainties in cylindrical anode current inferences on pulsed power drivers
A Porwitzky, J Brown
Physics of Plasmas 25 (6), 2018
212018
Plasma and radiation detection via fiber interferometry
DH Dolan, K Bell, B Fox, SC Jones, P Knapp, MR Gomez, M Martin, ...
Journal of Applied Physics 123 (3), 2018
212018
Direct measurements of anode/cathode gap plasma in cylindrically imploding loads on the Z machine
A Porwitzky, DH Dolan, MR Martin, G Laity, RW Lemke, TR Mattsson
Physics of Plasmas 25 (6), 2018
192018
Progress towards an end-to-end model of an electrothermal chemical gun
AJ Porwitzky, M Keidar, ID Boyd
2008 14th Symposium on Electromagnetic Launch Technology, 1-6, 2008
192008
Equation of state measurements on iron near the melting curve at planetary core conditions by shock and ramp compressions
SC Grant, T Ao, CT Seagle, AJ Porwitzky, JP Davis, KR Cochrane, ...
Journal of Geophysical Research: Solid Earth 126 (3), e2020JB020008, 2021
162021
Chemically reacting plasma jet expansion simulation for application to electrothermal chemical guns
A Porwitzky, L Scalabrin, M Keidar, I Boyd
38th AIAA Plasmadynamics and Lasers Conference In conjunction with the 16th …, 2007
162007
Large time-varying inductance load for studying power flow on the machine
A Porwitzky, BT Hutsel, CT Seagle, T Ao, S Grant, A Bernstein, JF Lin, ...
Physical Review Accelerators and Beams 22 (9), 090401, 2019
132019
Determining the electrical conductivity of metals using the 2 MA Thor pulsed power driver
A Porwitzky, KR Cochrane, B Stoltzfus
Review of Scientific Instruments 92 (5), 2021
112021
Compression-induced solidification of shock-melted cerium
CT Seagle, MP Desjarlais, AJ Porwitzky, BJ Jensen
Physical Review B 102 (5), 054102, 2020
112020
Studying the Richtmyer–Meshkov instability in convergent geometry under high energy density conditions using the Decel platform
DA Yager-Elorriaga, FW Doss, GA Shipley, PF Knapp, DE Ruiz, ...
Physics of Plasmas 29 (5), 2022
102022
A novel, magnetically driven convergent Richtmyer–Meshkov platform
PF Knapp, MR Martin, D Yager-Elorriaga, AJ Porwitzky, FW Doss, ...
Physics of Plasmas 27 (9), 2020
102020
Development and integration of photonic Doppler velocimetry as a diagnostic for radiation driven experiments on the Z-machine
KJ Swanson, GS Jaar, DC Mayes, RC Mancini, VV Ivanov, ...
Review of Scientific Instruments 93 (4), 2022
92022
Shock-ramp compression of tin near the melt line
CT Seagle, AJ Porwitzky
AIP Conference Proceedings 1979 (1), 2018
92018
An end-to-end model of an electrothermal chemical gun
AJ Porwitzky
University of Michigan, 2008
92008
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Articles 1–20