Improving the off-axis spatial resolution and dynamic range of the NIF X-ray streak cameras (invited)

We report simulations and experiments that demonstrate an increase in spatial resolution of the NIF core diagnostic x-ray streak cameras by at least a factor of two, especially off axis. A design was achieved by using a corrector electron optic to flatten the field curvature at the detector plane an...

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Veröffentlicht in:Review of scientific instruments 2016-11, Vol.87 (11), p.11E202-11E202
Hauptverfasser: MacPhee, A. G., Dymoke-Bradshaw, A. K. L., Hares, J. D., Hassett, J., Hatch, B. W., Meadowcroft, A. L., Bell, P. M., Bradley, D. K., Datte, P. S., Landen, O. L., Palmer, N. E., Piston, K. W., Rekow, V. V., Hilsabeck, T. J., Kilkenny, J. D.
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Sprache:eng
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Zusammenfassung:We report simulations and experiments that demonstrate an increase in spatial resolution of the NIF core diagnostic x-ray streak cameras by at least a factor of two, especially off axis. A design was achieved by using a corrector electron optic to flatten the field curvature at the detector plane and corroborated by measurement. In addition, particle in cell simulations were performed to identify the regions in the streak camera that contribute the most to space charge blurring. These simulations provide a tool for convolving synthetic pre-shot spectra with the instrument function so signal levels can be set to maximize dynamic range for the relevant part of the streak record.
ISSN:0034-6748
1089-7623
DOI:10.1063/1.4960376