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Part 1: Document Description
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Citation |
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Title: |
The magnetic recoil spectrometer (MRSt) for time-resolved measurements of the neutron spectrum at the National Ignition Facility (NIF) |
Identification Number: |
doi:10.7910/DVN/WC2OKM |
Distributor: |
Harvard Dataverse |
Date of Distribution: |
2018-10-18 |
Version: |
1 |
Bibliographic Citation: |
J. A. Frenje, T. J. Hilsabeck, C. W. Wink, P. Bell, R. Bionta, C. Cerjan, M. Gatu Johnson, J. D. Kilkenny, C. K. Li, F. H. Séguin and R. D. Petrasso, 2018, "The magnetic recoil spectrometer (MRSt) for time-resolved measurements of the neutron spectrum at the National Ignition Facility (NIF)", https://doi.org/10.7910/DVN/WC2OKM, Harvard Dataverse, V1, UNF:6:mLg2saU/2CUOqmk+pRNTDw== [fileUNF] |
Citation |
|
Title: |
The magnetic recoil spectrometer (MRSt) for time-resolved measurements of the neutron spectrum at the National Ignition Facility (NIF) |
Identification Number: |
doi:10.7910/DVN/WC2OKM |
Authoring Entity: |
J. A. Frenje, T. J. Hilsabeck, C. W. Wink, P. Bell, R. Bionta, C. Cerjan, M. Gatu Johnson, J. D. Kilkenny, C. K. Li, F. H. Séguin and R. D. Petrasso |
Distributor: |
Harvard Dataverse |
Holdings Information: |
https://doi.org/10.7910/DVN/WC2OKM |
Study Scope |
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Keywords: |
Physics, fuel assembly, hot-spot formation, ICF, neutron spectrometry, time-resolved |
Abstract: |
The next-generation magnetic recoil spectrometer for time-resolved measurements of the neutron spectrum has been conceptually designed for the National Ignition Facility. This spectrometer, called MRSt, represents a paradigm shift in our thinking about neutron spectrometry for inertial confinement fusion applications, as it will provide simultaneously information about the burn history and time evolution of areal density, apparent ion temperature, yield, and macroscopic flows during burn. From this type of data, an assessment of the evolution of the fuel assembly, hotspot, and alpha heating can be made. According to simulations, the MRSt will provide accurate data with a time resolution of ~20 ps and energy resolution of ~100 keV for total neutron yields above ~10[sup]16. At lower yields, the diagnostic will be operated at a higher-efficiency, lower-energy-resolution mode to provide a time resolution of ~20 ps. |
Notes: |
<a href="http://library.psfc.mit.edu/catalog/reports/2010/16ja/16ja032/16ja032_abs.html">PSFC REPORT PSFC/JA-16-32</a><br /><br />This work was performed under the auspices of the U.S. Department of Energy by Lawrence Livermore National Laboratory under Contract No. DE-AC52-07NA27344. |
Methodology and Processing |
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Sources Statement |
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Data Access |
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Notes: |
This dataset is made available without information on how it can be used. You should communicate with the Contact(s) specified before use. |
Other Study Description Materials |
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File Description--f3241818 |
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File: 16ja032_fig1_data.tab |
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File: 16ja032_fig3_data.tab |
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Notes: |
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File Description--f3241819 |
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File: 16ja032_table1_data.tab |
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Notes: |
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Label: |
16ja032_archival_manuscript.pdf |
Text: | |
Notes: |
application/pdf |