Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Scaling magnetized liner inertial fusion on Z and future pulsed-power accelerators

Journal Article · · Physics of Plasmas
DOI:https://doi.org/10.1063/1.4941100· OSTI ID:1236903

The MagLIF (Magnetized Liner Inertial Fusion) concept [S. A. Slutz et al., Phys. Plasmas 17, 056303 (2010)] has demonstrated fusion–relevant plasma conditions [M. R. Gomez et al., Phys. Rev. Lett. 113, 155003 (2014)] on the Z accelerator with a peak drive current of about 18 MA. We present 2D numerical simulations of the scaling of MagLIF on Z as a function of drive current, preheat energy, and applied magnetic field. The results indicate that deuterium-tritium (DT) fusion yields greater than 100 kJ could be possible on Z when all of these parameters are at the optimum values: i.e., peak current = 25 MA, deposited preheat energy = 5 kJ, and Bz = 30 T. Much higher yields have been predicted [S. A. Slutz and R. A. Vesey, Phys. Rev. Lett. 108, 025003 (2012)] for MagLIF driven with larger peak currents. Two high performance pulsed-power accelerators (Z300 and Z800) based on linear-transformer-driver technology have been designed [W. A. Stygar et al., Phys. Rev. ST Accel. Beams 18, 110401 (2015)]. The Z300 design would provide 48 MA to a MagLIF load, while Z800 would provide 65 MA. Parameterized Thevenin-equivalent circuits were used to drive a series of 1D and 2D numerical MagLIF simulations with currents ranging from what Z can deliver now to what could be achieved by these conceptual future pulsed-power accelerators. 2D simulations of simple MagLIF targets containing just gaseous DT have yields of 18 MJ for Z300 and 440 MJ for Z800. The 2D simulated yield for Z800 is increased to 7 GJ by adding a layer of frozen DT ice to the inside of the liner.

Research Organization:
Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)
Sponsoring Organization:
USDOE; USDOE National Nuclear Security Administration (NNSA)
Grant/Contract Number:
AC04-94AL85000
OSTI ID:
1236903
Alternate ID(s):
OSTI ID: 1421119
OSTI ID: 22493886
OSTI ID: 1238658
Report Number(s):
SAND--2015-9191J; 022702
Journal Information:
Physics of Plasmas, Journal Name: Physics of Plasmas Journal Issue: 2 Vol. 23; ISSN 1070-664X
Publisher:
American Institute of PhysicsCopyright Statement
Country of Publication:
United States
Language:
English

References (30)

Pulsed-power-driven cylindrical liner implosions of laser preheated fuel magnetized with an axial field journal May 2010
Thermonuclear ignition in inertial confinement fusion and comparison with magnetic confinement journal May 2010
Measurements of magneto-Rayleigh–Taylor instability growth during the implosion of initially solid metal liners journal May 2011
Beryllium liner implosion experiments on the Z accelerator in preparation for magnetized liner inertial fusion journal May 2013
Fusion-neutron-yield, activation measurements at the Z accelerator: Design, analysis, and sensitivity journal April 2014
Modified helix-like instability structure on imploding z-pinch liners that are pre-imposed with a uniform axial magnetic field journal May 2014
ZAPP: The Z Astrophysical Plasma Properties collaboration journal May 2014
Design of magnetized liner inertial fusion experiments using the Z facility journal July 2014
Pulsed-coil magnet systems for applying uniform 10–30 T fields to centimeter-scale targets on Sandia's Z facility journal December 2014
Magnetic flux and heat losses by diffusive, advective, and Nernst effects in magnetized liner inertial fusion-like plasma journal April 2015
Demonstration of thermonuclear conditions in magnetized liner inertial fusion experimentsa) journal May 2015
Diagnosing magnetized liner inertial fusion experiments on Za) journal May 2015
Theory and three‐dimensional simulation of light filamentation in laser‐produced plasma journal July 1993
Magnetohydrodynamic behavior of thermonuclear fuel in a preconditioned electron beam imploded target journal January 1981
Development of the indirect‐drive approach to inertial confinement fusion and the target physics basis for ignition and gain journal November 1995
Parameter space for magnetized fuel targets in inertial confinement fusion journal March 1983
Ignition conditions for magnetized target fusion in cylindrical geometry journal January 2000
Measurements of Magneto-Rayleigh-Taylor Instability Growth during the Implosion of Initially Solid Al Tubes Driven by the 20-MA, 100-ns Z Facility journal October 2010
High-Gain Magnetized Inertial Fusion journal January 2012
Penetrating Radiography of Imploding and Stagnating Beryllium Liners on the Z Accelerator journal September 2012
Electrothermal Instability Mitigation by Using Thick Dielectric Coatings on Magnetically Imploded Conductors journal April 2014
Experimental Demonstration of Fusion-Relevant Conditions in Magnetized Liner Inertial Fusion journal October 2014
Understanding Fuel Magnetization and Mix Using Secondary Nuclear Reactions in Magneto-Inertial Fusion journal October 2014
Alpha Heating and Burning Plasmas in Inertial Confinement Fusion journal June 2015
Production of Thermonuclear Neutrons from Deuterium-Filled Capsule Implosions Driven by Z -Pinch Dynamic Hohlraums journal June 2004
Displacement current phenomena in the magnetically insulated transmission lines of the refurbished Z accelerator journal December 2010
Computational analysis of current-loss mechanisms in a post-hole convolute driven by magnetically insulated transmission lines journal March 2015
Conceptual designs of two petawatt-class pulsed-power accelerators for high-energy-density-physics experiments journal November 2015
Magnetically Driven Implosions for Inertial Confinement Fusion at Sandia National Laboratories journal December 2012
Z-Beamlet: a multikilojoule, terawatt-class laser system journal January 2005

Similar Records

Scaling magnetized liner inertial fusion on Z and future pulsed-power accelerators
Journal Article · Sun Feb 14 23:00:00 EST 2016 · Physics of Plasmas · OSTI ID:22493886

Enhancing performance of magnetized liner inertial fusion at the Z facility
Journal Article · Tue Nov 20 19:00:00 EST 2018 · Physics of Plasmas · OSTI ID:1487416