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Catherin Niemann - One of the best experts on this subject based on the ideXlab platform.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

N L Kugland - One of the best experts on this subject based on the ideXlab platform.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

Anna Tauschwitz - One of the best experts on this subject based on the ideXlab platform.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

D B Schaeffer - One of the best experts on this subject based on the ideXlab platform.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

Siegfried H. Glenzer - One of the best experts on this subject based on the ideXlab platform.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.

  • demonstration of a low electromagnetic pulse laser driven argon gas jet x ray source
    Applied Physics Letters, 2012
    Co-Authors: N L Kugland, B Aurand, Anna Tauschwitz, D B Schaeffer, E T Everson, C G Constantin, Siegfried H. Glenzer, C.g. Brown, Catherin Niemann
    Abstract:

    Laser-produced Plasmas are often used as bright x-ray backlighters for time-resolved Plasma Diagnostics, but such backlighters simultaneously generate damaging electromagnetic pulse (EMP). A laser-driven Ar gas jet x-ray source has been measured with magnetic flux B-dot probes to produce 20 times ±37% less integrated EMP in the 0.5–2.5 GHz band than a solid chlorinated plastic foil, while retaining 85% of the laser to ≈3 keV x-ray conversion efficiency. These results are important for future backlighter development, since tailoring target density may provide a way to reduce EMP even as laser power increases.