X-ray fluorescence measurements to determine the effect of target heating on imaging efficiency, at a photon energy of 15.7 keV corresponding to the Kα line of zirconium, have been carried out using limited-mass foils irradiated by the Texas Petawatt Laser. Zirconium foils that ranged in volume from 3000 × 3000 × 21 μm3 to 150 × 150 × 6 μm3 were irradiated with 100 J, 8 ps-long pulses and a mean intensity of 4 × 1019 W/cm2. The Kα emission was measured simultaneously using a highly ordered pyrolytic graphite crystal spectrometer and a curved quartz imaging crystal. The measured ratio of the integrated image signal to the integrated spectral signal was, within the experimental error, constant, indicating that the imaging efficiency's dependence on temperature is weak throughout the probed range. Based on our experience of target heating under similar conditions, we estimate a temperature of ∼200 eV for the smallest targets. The successful imaging of Kα emission for temperatures this high represents an important proof of concept for Zr Kα imaging. At these temperatures, the imaging of Kα emission from lower-Z materials (such as Cu) is limited by temperature-dependent shifts in the Kα emission energy.
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July 2014
Research Article|
July 10 2014
Kα x-ray imaging of laser-irradiated, limited-mass zirconium foils Available to Purchase
M. Storm;
M. Storm
1Department of Physics,
The Ohio State University
, 191 West Woodruff Road, Columbus, Ohio 43210, USA
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B. Eichman;
B. Eichman
2The Laboratory for Laser Energetics,
University of Rochester
, 250 East River Road, Rochester, New York 14623-1299, USA
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C. Orban;
C. Orban
1Department of Physics,
The Ohio State University
, 191 West Woodruff Road, Columbus, Ohio 43210, USA
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S. Jiang;
S. Jiang
1Department of Physics,
The Ohio State University
, 191 West Woodruff Road, Columbus, Ohio 43210, USA
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G. Fiksel;
G. Fiksel
2The Laboratory for Laser Energetics,
University of Rochester
, 250 East River Road, Rochester, New York 14623-1299, USA
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C. Stoeckl;
C. Stoeckl
2The Laboratory for Laser Energetics,
University of Rochester
, 250 East River Road, Rochester, New York 14623-1299, USA
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G. Dyer;
G. Dyer
3The Texas Center of High Energy Density Science,
The University of Texas at Austin
, 2511 Speedway Street, Austin, Texas 78712, USA
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T. Ditmire;
T. Ditmire
3The Texas Center of High Energy Density Science,
The University of Texas at Austin
, 2511 Speedway Street, Austin, Texas 78712, USA
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R. Stephens;
R. Stephens
4
General Atomics
, 3550 General Atomics Court, San Diego, California 92121-1200, USA
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W. Theobald;
W. Theobald
2The Laboratory for Laser Energetics,
University of Rochester
, 250 East River Road, Rochester, New York 14623-1299, USA
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J. A. Delettrez;
J. A. Delettrez
2The Laboratory for Laser Energetics,
University of Rochester
, 250 East River Road, Rochester, New York 14623-1299, USA
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R. R. Freeman;
R. R. Freeman
1Department of Physics,
The Ohio State University
, 191 West Woodruff Road, Columbus, Ohio 43210, USA
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K. Akli
K. Akli
1Department of Physics,
The Ohio State University
, 191 West Woodruff Road, Columbus, Ohio 43210, USA
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M. Storm
1
B. Eichman
2
C. Orban
1
S. Jiang
1
G. Fiksel
2
C. Stoeckl
2
G. Dyer
3
T. Ditmire
3
R. Stephens
4
W. Theobald
2
J. A. Delettrez
2
R. R. Freeman
1
K. Akli
1
1Department of Physics,
The Ohio State University
, 191 West Woodruff Road, Columbus, Ohio 43210, USA
2The Laboratory for Laser Energetics,
University of Rochester
, 250 East River Road, Rochester, New York 14623-1299, USA
3The Texas Center of High Energy Density Science,
The University of Texas at Austin
, 2511 Speedway Street, Austin, Texas 78712, USA
4
General Atomics
, 3550 General Atomics Court, San Diego, California 92121-1200, USA
Citation
M. Storm, B. Eichman, C. Orban, S. Jiang, G. Fiksel, C. Stoeckl, G. Dyer, T. Ditmire, R. Stephens, W. Theobald, J. A. Delettrez, R. R. Freeman, K. Akli; Kα x-ray imaging of laser-irradiated, limited-mass zirconium foils. Phys. Plasmas 1 July 2014; 21 (7): 072704. https://doi.org/10.1063/1.4889881
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