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Diagnosing and mitigating laser preheat induced mix in MagLIF

Physics of Plasmas

Harvey-Thompson, Adam J.; Weis, Matthew R.; Harding, Eric H.; Geissel, Matthias G.; Ampleford, David A.; Chandler, Gordon A.; Fein, Jeffrey R.; Glinsky, Michael E.; Gomez, Matthew R.; Hahn, K.D.; Hansen, Stephanie B.; Jennings, Christopher A.; Knapp, Patrick K.; Paguio, R.R.; Perea, L.; Peterson, Kyle J.; Porter, John L.; Rambo, Patrick K.; Robertson, Grafton K.; Rochau, G.A.; Ruiz, Daniel E.; Schwarz, Jens S.; Shores, Jonathon S.; Sinars, Daniel S.; Slutz, Stephen A.; Smith, G.E.; Smith, Ian C.; Speas, Christopher S.; Whittemore, K.

A series of Magnetized Liner Inertial Fusion (MagLIF) experiments have been conducted in order to investigate the mix introduced from various target surfaces during the laser preheat stage. The material mixing was measured spectroscopically for a variety of preheat protocols by employing mid-atomic number surface coatings applied to different regions of the MagLIF target. The data show that the material from the top cushion region of the target can be mixed into the fuel during preheat. For some preheat protocols, our experiments show that the laser-entrance-hole (LEH) foil used to contain the fuel can be transported into the fuel a significant fraction of the stagnation length and degrade the target performance. Preheat protocols using pulse shapes of a few-ns duration result in the observable LEH foil mix both with and without phase-plate beam smoothing. In order to reduce this material mixing, a new capability was developed to allow for a low energy (∼20 J) laser pre-pulse to be delivered early in time (-20 ns) before the main laser pulse (∼1.5 kJ). In experiments, this preheat protocol showed no indications of the LEH foil mix. The experimental results are broadly in agreement with pre-shot two-dimensional HYDRA simulations that helped motivate the development of the early pre-pulse capability.

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Uncovering signatures of preheat performance in MagLIF experiments using stimulated Raman and Brillouin backscatter spectra

Fein, Jeffrey R.; Bliss, David E.; Geissel, Matthias G.; Harvey-Thompson, Adam J.; Awe, Thomas J.; Ampleford, David A.; Glinsky, Michael E.; Laros, James H.; Harding, Eric H.; Macrunnels, K.A.; Patel, Sonal P.; Ruiz, Daniel E.; Scoglietti, Daniel S.; Smith, Ian C.; Weis, Matthew R.; Peterson, Kara J.

Abstract not provided.

A Wolter imager on the Z machine to diagnose warm x-ray sources

Review of Scientific Instruments

Fein, Jeffrey R.; Ampleford, David A.; Vogel, J.K.; Kozioziemski, B.; Walton, C.C.; Wu, Ming W.; Ames, A.; Ayers, J.; Ball, Christopher R.; Bell, P.; Bourdon, Christopher B.; Bradley, D.; Bruni, R.; Gard, Paul D.; Kilaru, K.; Lake, Patrick W.; Maurer, A.; Pickworth, L.A.; Pivovaroff, M.J.; Ramsey, B.; Roberts, O.J.; Romaine, S.; Sullivan, Michael A.; Kirtley, Christopher K.; Johnson, Drew J.; Nielsen-Weber, Linda B.

A new Wolter x-ray imager has been developed for the Z machine to study the emission of warm (>15 keV) x-ray sources. A Wolter optic has been adapted from observational astronomy and medical imaging, which uses curved x-ray mirrors to form a 2D image of a source with 5 × 5 × 5 mm3 field-of-view and measured 60-300-μm resolution on-axis. The mirrors consist of a multilayer that create a narrow bandpass around the Mo Kα lines at 17.5 keV. We provide an overview of the instrument design and measured imaging performance. In addition, we present the first data from the instrument of a Mo wire array z-pinch on the Z machine, demonstrating improvements in spatial resolution and a 350-4100× increase in the signal over previous pinhole imaging techniques.

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Progress on High Energy X-ray Imaging Tools at the US National Labs

Walton, Chris C.; Pardini, Tom; Brejnholt, Nicolai F.; Ayers, Jay J.; Mccarville, 1.; Pickworth, Louisa A.; Bradley, David K.; Decker, Todd A.; Hau-Riege, Stefan P.; Hill, Randal M.; Michael J PivovaroffMichael J.; Regina SouflRegina; Author, No; Vogel, Julia K.; Bell, Perry M.; Ampleford, David A.; Fein, Jeffrey R.; Ball, Christopher R.; Bourdon, Christopher B.; Romaine, Suzanne; Ames, Andrew O.; Bruni, Ricardo J.; Kilaru, Kiranmayee; Roberts, Oliver J.; Ramsey, Brian D.

Abstract not provided.

A Wolter Imager on the Z Machine to Diagnose Warm X-ray Sources

Fein, Jeffrey R.; Ampleford, David A.; Vogel, Julia; Kozioziemski, Bernie; Walton, Christopher; Wu, Ming W.; Ames, Andrew; Ayers, J.; Ball, Christopher R.; Bell, Perry; Bourdon, Christopher B.; Bradley, David; Bruni, R.; Gard, Paul D.; Kilaru, K.; Lake, Patrick W.; Maurer, A.; Pickworth, Louisa; Pivovaroff, Michael; Ramsey, Brian; Roberts, Oliver; Romaine, Suzanne; Sullivan, Michael A.; Kirtley, Christopher K.

Abstract not provided.

Pushing Laser Pre-Heat in MagLIF

Geissel, Matthias G.; Harvey-Thompson, Adam J.; Fein, Jeffrey R.; Woodbury, Daniel W.; Davis, Daniel R.; Bliss, David E.; Scoglietti, Daniel S.; Gomez, Matthew R.; Ampleford, David A.; Awe, Thomas J.; Colombo, Anthony P.; Weis, Matthew R.; Jennings, Christopher A.; Glinsky, Michael E.; Slutz, Stephen A.; Ruiz, Daniel E.; Peterson, Kyle J.; Smith, Ian C.; Shores, Jonathon S.; Kimmel, Mark W.; Rambo, Patrick K.; Schwarz, Jens S.; Galloway, B.R.; Speas, Christopher S.; Porter, John L.

Abstract not provided.

A Wolter Imager on the Z Machine to Diagnose Warm X-ray Sources

Ampleford, David A.; Fein, Jeffrey R.; J K Vogel, B.K.; Kozioziemski, B.J.; Walton, C.C.; Wu, Ming W.; Ball, Christopher R.; A Ames, J.A.; Bell, P.; Bourdon, Christopher B.; D Bradley, R.B.; Dunham, Gregory S.; Gard, Paul D.; Johnson, Drew J.; Kilaru, K.; Lake, Patrick W.; Maurer, A.; Nielsen-Weber, Linda B.; Pickworth, L.A.; M Pivovaroff, S.R.; Ramsey, B.; Roberts, O.J.; Sullivan, Michael A.; Rochau, G.A.

Abstract not provided.

Engineering Design for Wolter Imaging Diagnostic on Z

Ball, Christopher R.; Ampleford, David A.; Gard, Paul D.; Maurer, A.; Bourdon, Christopher B.; Fein, Jeffrey R.; Wu, Ming W.; Lake, Patrick W.; Nielsen-Weber, Linda B.; Dunham, Gregory S.; Johnson, Drew J.; Johns, Owen J.; Sullivan, Michael A.; Kirtley, Christopher K.; Kozioziemski, B.; Pickworth, L.A.; Vogel, J.K.; Pivovaroff, M.J.; Walton, C.C.; Ayers, J.; Bell, P.; Ramsey, B.; Romaine, S.

Abstract not provided.

Properties of laser-produced GaAs plasmas measured from highly resolved X-ray line shapes and ratios

High Energy Density Physics

Seely, J.F.; Fein, Jeffrey R.; Manuel, M.; Keiter, P.; Drake, P.; Kuranz, C.; Belancourt, Patrick; Ralchenko, Yu; Hudson, L.; Feldman, U.

The properties of hot, dense plasmas generated by the irradiation of GaAs targets by the Titan laser at Lawrence Livermore National Laboratory were determined by the analysis of high resolution K shell spectra in the 9 keV to 11 keV range. The laser parameters, such as relatively long pulse duration and large focal spot, were chosen to produce a steady-state plasma with minimal edge gradients, and the time-integrated spectra were compared to non-LTE steady state spectrum simulations using the FLYCHK and NOMAD codes. The bulk plasma streaming velocity was measured from the energy shifts of the Ga He-like transitions and Li-like dielectronic satellites. The electron density and the electron energy distribution, both the thermal and the hot non-thermal components, were determined from the spectral line ratios. After accounting for the spectral line broadening contributions, the plasma turbulent motion was measured from the residual line widths. The ionization balance was determined from the ratios of the He-like through F-like spectral features. The detailed comparison of the experimental Ga spectrum and the spectrum simulated by the FLYCHK code indicates two significant discrepancies, the transition energy of a Li-like dielectronic satellite (designated t) and the calculated intensity of a He-like line (x), that should lead to improvements in the kinetics codes used to simulate the X-ray spectra from highly-charged ions.

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Results 51–63 of 63
Results 51–63 of 63