Matthew Thompson

Matthew Thompson

Greater Seattle Area
2K followers 500+ connections

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Matthew Thompson is Vice President of Systems Engineering at Zap Energy, a company…

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  • Zap Energy Graphic

    Zap Energy

    Everett, Washington, United States

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    Greater Seattle Area

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    Baltimore, Maryland Area

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    Orange County, California Area

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    Orange County, California Area

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    Orange County, California Area

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    San Francisco Bay Area

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    Greater Los Angeles Area

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  • UCLA Graphic

    UCLA

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    Dissertation Title: Plasma Density Transition Trapping of Electrons in Plasma Wake Field Accelerators

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    Graduated with Departmental Honors

Licenses & Certifications

Volunteer Experience

Publications

  • Engineering Paradigms for Sheared-Flow-Stabilized Z-Pinch Fusion Energy

    Fusion Science and Technology

    The sheared-flow-stabilized Z-pinch concept is on a path to commercialization at Zap Energy. Recent experiments on the Fusion Z-pinch Experiment (FuZE) device corroborate expected plasma stability and thermonuclear fusion reaction rates. Experimental campaigns are underway to increase the pinch current, the stable plasma duration, and the DD fusion neutron production. The next-generation device FuZE-Q is currently undergoing commissioning and will begin operation at current levels where…

    The sheared-flow-stabilized Z-pinch concept is on a path to commercialization at Zap Energy. Recent experiments on the Fusion Z-pinch Experiment (FuZE) device corroborate expected plasma stability and thermonuclear fusion reaction rates. Experimental campaigns are underway to increase the pinch current, the stable plasma duration, and the DD fusion neutron production. The next-generation device FuZE-Q is currently undergoing commissioning and will begin operation at current levels where scientific breakeven-equivalent conditions are expected in the near future. The Z-pinch configuration offers the promise of a compact fusion device owing to its simple geometry, unity beta, and absence of external magnetic field coils.

    In addition to a robust experimental program pushing plasma performance toward breakeven conditions, Zap Energy has parallel programs developing power handling systems suitable for future power plants. Technologies under development include high-average-power repetitive pulsed power, high-duty-cycle cathodes, and liquid-metal wall systems. High-level features of the conceptual power plant core design are elaborated and compared with other approaches to fusion energy.

    Other authors
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  • The Effective Resume: A Concise Guide to Compelling STEM Resume Construction and CV Conversion

    Comprehensive resume writing guidance for scientists, written by a scientist who hires scientists.

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  • Field Reversed Configuration Confinement Enhancement through Edge Biasing and Neutral Beam Injection

    Physical Review Letters

    Field reversed configurations (FRCs) with high confinement are obtained in the C-2 device by combining plasma gun edge biasing and neutral beam injection. The plasma gun creates an inward radial electric field that counters the usual FRC spin-up. The n=2 rotational instability is stabilized without applying quadrupole magnetic fields. The FRCs are nearly axisymmetric, which enables fast ion confinement. The plasma gun also produces E B shear in the FRC edge layer, which may explain the observed…

    Field reversed configurations (FRCs) with high confinement are obtained in the C-2 device by combining plasma gun edge biasing and neutral beam injection. The plasma gun creates an inward radial electric field that counters the usual FRC spin-up. The n=2 rotational instability is stabilized without applying quadrupole magnetic fields. The FRCs are nearly axisymmetric, which enables fast ion confinement. The plasma gun also produces E B shear in the FRC edge layer, which may explain the observed improved particle transport. The FRC confinement times are improved by factors 2 to 4, and the plasma lifetimes are extended from 1 to up to 4 ms.

    See publication

Honors & Awards

  • Fellow

    American Physical Society

    The number of recommended fellowship nominees in each year may not exceed one-half percent of the then current membership of the Society, excluding student members. It is a prestigious recognition by your Forum on Industrial and Applied Physics (FIAP) peers of the outstanding contributions you have made to physics. Dr. Thompson's citation reads:

    “For exceptional contributions to the support and advancement of industrial and applied
    physics through the leadership of corporate…

    The number of recommended fellowship nominees in each year may not exceed one-half percent of the then current membership of the Society, excluding student members. It is a prestigious recognition by your Forum on Industrial and Applied Physics (FIAP) peers of the outstanding contributions you have made to physics. Dr. Thompson's citation reads:

    “For exceptional contributions to the support and advancement of industrial and applied
    physics through the leadership of corporate technology programs and related professional
    society initiatives.”

Organizations

  • IEEE Nuclear and Plasma Sciences Society

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    - Present
  • American Physical Society

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    - Present

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