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Featured researches published by E.G. Forbes.


9TH INTERNATIONAL CONFERENCE ON DENSE Z PINCHES | 2014

High energy density Z-pinch plasmas using flow stabilization

U. Shumlak; R.P. Golingo; B.A. Nelson; Chris Bowers; S.A. Doty; E.G. Forbes; M.C. Hughes; B. Kim; Sean D. Knecht; K.K. Lambert; Weston Lowrie; Michael Ross; J.R. Weed

The ZaP Flow Z-Pinch research project[1] at the University of Washington investigates the effect of sheared flows on MHD instabilities. Axially flowing Z-pinch plasmas are produced that are 100 cm long with a 1 cm radius. The plasma remains quiescent for many radial Alfven times and axial flow times. The quiescent periods are characterized by low magnetic mode activity measured at several locations along the plasma column and by stationary visible plasma emission. Plasma evolution is modeled with high-resolution simulation codes – Mach2, WARPX, NIMROD, and HiFi. Plasma flow profiles are experimentally measured with a multi-chord ion Doppler spectrometer. A sheared flow profile is observed to be coincident with the quiescent period, and is consistent with classical plasma viscosity. Equilibrium is determined by diagnostic measurements: interferometry for density; spectroscopy for ion temperature, plasma flow, and density[2]; Thomson scattering for electron temperature; Zeeman splitting for internal magneti...


Bulletin of the American Physical Society | 2014

Investigating the density structure of the ZaP-HD Flow Z-Pinch with digital holographic interferometry

Michael Ross; U. Shumlak; B.A. Nelson; R.P. Golingo; M.C. Hughes; E.G. Forbes; Matt Paliwoda


Bulletin of the American Physical Society | 2017

Overview of the FuZE Fusion Z-Pinch Experiment

U. Shumlak; B.A. Nelson; E.L. Claveau; E.G. Forbes; R.P. Golingo; A.D. Stepanov; T.R. Weber; Y. Zhang; H.S. McLean; D.P. Higginson; Andrea Schmidt; K.K. Tummel


Bulletin of the American Physical Society | 2017

Control of Z-pinch plasma properties through the initial neutral gas distribution in the FuZE Fusion Z-pinch Experiment

E.L. Claveau; U. Shumlak; B.A. Nelson; E.G. Forbes; R.P. Golingo; H.S. McLean; A.D. Stepanov; T.R. Weber; Y. Zhang


Bulletin of the American Physical Society | 2017

High resolution digital holographic interferometry on the FuZE Fusion Z-Pinch Experiment

T.R. Weber; U. Shumlak; B.A. Nelson; E.L. Claveau; E.G. Forbes; R.P. Golingo; A.D. Stepanov; Y. Zhang; H.S. McLean; D.P. Higginson; Andrea Schmidt; K.K. Tummel


Bulletin of the American Physical Society | 2017

Progress on Scaling the Sheared-Flow Stabilized Z-Pinch: The Fusion Z-Pinch Experiment "FuZE"

B.A. Nelson; U. Shumlak; E.L. Claveau; E.G. Forbes; R.P. Golingo; A.D. Stepanov; T.R. Weber; Y. Zhang; H.S. McLean; D.P. Higginson; Andrea Schmidt; K.K. Tummel


Bulletin of the American Physical Society | 2016

Time-resolved Spectroscopy of a Sheared Flow Stabilized Z-pinch Plasma

E.G. Forbes


Bulletin of the American Physical Society | 2016

Parameter scaling toward high-energy density in a quasi-steady flow Z-pinch

M.C. Hughes; U. Shumlak; B.A. Nelson; R.P. Golingo; E.L. Claveau; S.A. Doty; E.G. Forbes; B. Kim; Michael Ross


Bulletin of the American Physical Society | 2015

Z-pinch equilibrium and instability analysis with digital holographic interferometry

Michael Ross; U. Shumlak; B.A. Nelson; R.P. Golingo; M.C. Hughes; E.L. Claveau; J.R. Weed; E.G. Forbes; S.A. Doty; B. Kim


Bulletin of the American Physical Society | 2015

Magnetic field topology analysis for the ZaP-HD sheared flow stabilized Z-pinch

E.L. Claveau; U. Shumlak; B.A. Nelson; R.P. Golingo; S.A. Doty; E.G. Forbes; M.C. Hughes; B. Kim; Michael Ross; J.R. Weed

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B.A. Nelson

University of Washington

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R.P. Golingo

University of Washington

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U. Shumlak

University of Washington

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E.L. Claveau

University of Washington

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Michael Ross

Humboldt State University

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H.S. McLean

Lawrence Livermore National Laboratory

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T.R. Weber

University of Washington

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Andrea Schmidt

Lawrence Livermore National Laboratory

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D.P. Higginson

University of California

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K.K. Tummel

University of California

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