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Dolan, Daniel H. ; Ao, Tommy A. ; Furnish, Michael D. ; Harding, Eric H. ; Knapp, Patrick K. ; Lemke, Raymond W. ; Martin, Matthew ; McBride, Ryan D. ; Romero, Dustin H.
Gomez, Matthew R. ; Ampleford, David A. ; Awe, Thomas J. ; Bailey, James E. ; Harvey-Thompson, Adam J. ; Jones, Brent M. ; Knapp, Patrick K. ; Cuneo, M.E. ; Rochau, G.A. ; Sinars, Daniel S. ; Hansen, Stephanie B. ; Peterson, Kyle J. ; McBride, Ryan D. ; Jennings, Christopher A. ; Bliss, David E. ; Carlson, Alan L. ; Lamppa, Derek C.
McBride, Ryan D. ; Lamppa, Derek C.
Peterson, Kyle J. ; Slutz, Stephen A. ; Sinars, Daniel S. ; Sefkow, Adam B. ; Gomez, Matthew R. ; Awe, Thomas J. ; Harvey-Thompson, Adam J. ; Geissel, Matthias G. ; Schmit, Paul S. ; Smith, Ian C. ; McBride, Ryan D. ; Rovang, Dean C. ; Knapp, Patrick K. ; Hansen, Stephanie B. ; Jennings, Christopher A. ; Harding, Eric H. ; Porter, John L. ; Vesey, Roger A. ; Blue, Brent B.; Schroen, Diana G.; Tomlinson, Kurt T.
Dolan, Daniel H. ; Lemke, Raymond W. ; Dalton, Devon D. ; Harding, Eric H. ; McBride, Ryan D. ; Martin, Matthew
Physics of Plasmas
Awe, Thomas J. ; Owen, Albert C. ; Gomez, Matthew R. ; Hansen, Stephanie B. ; Herrmann, Mark H. ; Jones, Michael J. ; Mckenney, John M. ; Robertson, Grafton K. ; Rochau, G.A. ; Savage, Mark E. ; Stygar, William A. ; Jennings, Christopher A. ; McBride, Ryan D. ; Lamppa, Derek C. ; Martin, Matthew ; Rovang, Dean C. ; Sinars, Daniel S. ; Slutz, Stephen A. ; Cuneo, M.E.
Physical Review Letters
McBride, Ryan D. ; Gomez, Matthew R. ; Hansen, Stephanie B. ; Herrmann, Mark H. ; Mckenney, John M. ; Robertson, Grafton K. ; Rochau, G.A. ; Savage, Mark E. ; Stygar, William A. ; Jennings, Christopher A. ; Lamppa, Derek C. ; Martin, Matthew ; Rovang, Dean C. ; Slutz, Stephen A. ; Cuneo, M.E. ; Owen, Albert C. ; Sinars, Daniel S.
Novel experimental data are reported that reveal helical instability formation on imploding z -pinch liners that are premagnetized with an axial field. Such instabilities differ dramatically from the mostly azimuthally symmetric instabilities that form on unmagnetized liners. The helical structure persists at nearly constant pitch as the liner implodes. This is surprising since, at the liner surface, the azimuthal drive field presumably dwarfs the axial field for all but the earliest stages of the experiment. These fundamentally 3D results provide a unique and challenging test for 3D-magnetohydrodynamics simulations.
Slutz, Stephen A. ; Martin, Matthew ; McBride, Ryan D. ; Rovang, Dean C. ; Sinars, Daniel S. ; Smith, Ian C. ; Sefkow, Adam B. ; Harvey-Thompson, Adam J. ; Awe, Thomas J. ; Cuneo, M.E. ; Geissel, Matthias G. ; Herrmann, Mark H. ; Jennings, Christopher A. ; Lamppa, Derek C.
McBride, Ryan D. ; Slutz, Stephen A. ; Hansen, Stephanie B.
Sinars, Daniel S. ; Peterson, Kyle J. ; Vesey, Roger A. ; Jennings, Christopher A. ; Herrmann, Mark H. ; McBride, Ryan D. ; Martin, Matthew ; Slutz, Stephen A. ; Yu, Edmund Y.
Hansen, Stephanie B. ; Jones, Brent M. ; Knapp, Patrick K. ; Lamppa, Derek C. ; McBride, Ryan D. ; Bailey, James E. ; Rochau, G.A. ; Slutz, Stephen A. ; Sinars, Daniel S. ; Gomez, Matthew R. ; Peterson, Kyle J. ; Ampleford, David A. ; Awe, Thomas J. ; Bliss, David E. ; Carlson, Alan L. ; Cuneo, M.E. ; Jennings, Christopher A. ; Harvey-Thompson, Adam J.
Slutz, Stephen A. ; Martin, Matthew ; McBride, Ryan D. ; Rovang, Dean C. ; Sinars, Daniel S. ; Vesey, Roger A. ; Harvey-Thompson, Adam J. ; Sefkow, Adam B. ; Awe, Thomas J. ; Cuneo, M.E. ; Herrmann, Mark H. ; Jennings, Christopher A. ; Lamppa, Derek C.
Peterson, Kyle J. ; Vesey, Roger A. ; Sefkow, Adam B. ; Cuneo, M.E. ; Sinars, Daniel S. ; Yu, Edmund Y. ; Martin, Matthew ; McBride, Ryan D. ; Jennings, Christopher A. ; Awe, Thomas J. ; Slutz, Stephen A.
McBride, Ryan D. ; Sinars, Daniel S. ; Cuneo, M.E. ; Herrmann, Mark H. ; Vesey, Roger A. ; Peterson, Kyle J. ; Sefkow, Adam B. ; Davis, Jean-Paul D. ; Flicker, Dawn G. ; Awe, Thomas J. ; Slutz, Stephen A. ; Jennings, Christopher A. ; Martin, Matthew ; Lemke, Raymond W. ; Gomez, Matthew R. ; Rovang, Dean C. ; Lamppa, Derek C.
Dolan, Daniel H. ; Lemke, Raymond W. ; Harding, Eric H. ; McBride, Ryan D. ; Martin, Matthew ; Dalton, Devon D.
Cuneo, M.E. ; Davis, Jean-Paul D. ; Lemke, Raymond W. ; McBride, Ryan D. ; Stygar, William A.
Cuneo, M.E. ; Davis, Jean-Paul D. ; Lemke, Raymond W. ; McBride, Ryan D. ; Stygar, William A.
Awe, Thomas J. ; Mckenney, John M. ; Owen, Albert C. ; Peterson, Kyle J. ; Rovang, Dean C. ; Sefkow, Adam B. ; Sinars, Daniel S. ; Slutz, Stephen A. ; Stygar, William A. ; Vesey, Roger A. ; Cuneo, M.E. ; Gomez, Matthew R. ; Harvey-Thompson, Adam J. ; Herrmann, Mark H. ; Kast, Brian A. ; Lamppa, Derek C. ; Mazarakis, Michael G. ; McBride, Ryan D.
Sinars, Daniel S. ; Jennings, Christopher A. ; Herrmann, Mark H. ; McBride, Ryan D. ; Cuneo, M.E. ; Peterson, Kyle J. ; Slutz, Stephen A. ; Yu, Edmund Y.
Stygar, William A. ; Fowler, William E. ; Gomez, Matthew R. ; Harmon, Roger L. ; Herrmann, Mark H. ; Huber, Dale L. ; Hutsel, Brian T. ; Bailey, James E. ; Jones, Michael J. ; Jones, Peter A. ; Leckbee, Joshua L. ; Lee, James R. ; Lewis, Scot A. ; Long, Finis W. ; Lopez, Mike R. ; Lucero, Diego J. ; Matzen, M.K. ; Mazarakis, Michael G. ; McBride, Ryan D. ; McKee, George R. ; Nakhleh, Charles N. ; Owen, Albert C. ; Rochau, G.A. ; Savage, Mark E. ; Schwarz, Jens S. ; Sefkow, Adam B. ; Sinars, Daniel S. ; Stoltzfus, Brian S. ; Vesey, Roger A. ; Wakeland, P. ; Cuneo, M.E. ; Flicker, Dawn G. ; Focia, Ronald J.
Lamppa, Derek C. ; Owen, Albert C. ; Mckenney, John M. ; Cuneo, M.E. ; McBride, Ryan D. ; Alexander, Charles S. ; Awe, Thomas J. ; Dalton, Devon D. ; Robertson, Grafton K.
McBride, Ryan D.
Herrmann, Mark H. ; Hansen, Stephanie B. ; Hess, Mark H. ; Owen, Albert C. ; Slutz, Stephen A. ; Nakhleh, Charles N. ; Sinars, Daniel S. ; Cuneo, M.E. ; McBride, Ryan D. ; Lamppa, Derek C. ; Rovang, Dean C. ; Awe, Thomas J. ; Martin, Matthew ; Jennings, Christopher A. ; Gomez, Matthew R.
Ampleford, David A. ; Savage, Mark E. ; Moore, James M. ; Jones, Brent M. ; McBride, Ryan D. ; Bailey, James E. ; Jones, Michael J. ; Gomez, Matthew R. ; Cuneo, M.E. ; Nakhleh, Charles N. ; Stygar, William A.
MHD models of imploding loads fielded on the Z accelerator are typically driven by reduced or simplified circuit representations of the generator. The performance of many of the imploding loads is critically dependent on the current and power delivered to them, so may be strongly influenced by the generators response to their implosion. Current losses diagnosed in the transmission lines approaching the load are further known to limit the energy delivery, while exhibiting some load dependence. Through comparing the convolute performance of a wide variety of short pulse Z loads we parameterize a convolute loss resistance applicable between different experiments. We incorporate this, and other current loss terms into a transmission line representation of the Z vacuum section. We then apply this model to study the current delivery to a wide variety of wire array and MagLif style liner loads.
Lemke, Raymond W. ; Dolan, Daniel H. ; McBride, Ryan D. ; Martin, Matthew ; Davis, Jean-Paul D. ; Dalton, Devon D.
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