A magnetic particle time-of-flight (MagPTOF) diagnostic for measurements of shock- and compression-bang time at the NIF (invited)

A magnetic particle time-of-flight (MagPTOF) diagnostic has been designed to measure shock- and compression-bang time using D(3)He-fusion protons and DD-fusion neutrons, respectively, at the National Ignition Facility (NIF). This capability, in combination with shock-burn weighted areal density meas...

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Veröffentlicht in:Review of scientific instruments 2014-11, Vol.85 (11), p.11D901-11D901
Hauptverfasser: Rinderknecht, H G, Sio, H, Frenje, J A, Magoon, J, Agliata, A, Shoup, M, Ayers, S, Bailey, C G, Gatu Johnson, M, Zylstra, A B, Sinenian, N, Rosenberg, M J, Li, C K, Sèguin, F H, Petrasso, R D, Rygg, J R, Kimbrough, J R, Mackinnon, A, Bell, P, Bionta, R, Clancy, T, Zacharias, R, House, A, Döppner, T, Park, H S, LePape, S, Landen, O, Meezan, N, Robey, H, Glebov, V U, Hohenberger, M, Stoeckl, C, Sangster, T C, Li, C, Parat, J, Olson, R, Kline, J, Kilkenny, J
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Sprache:eng
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Zusammenfassung:A magnetic particle time-of-flight (MagPTOF) diagnostic has been designed to measure shock- and compression-bang time using D(3)He-fusion protons and DD-fusion neutrons, respectively, at the National Ignition Facility (NIF). This capability, in combination with shock-burn weighted areal density measurements, will significantly constrain the modeling of the implosion dynamics. This design is an upgrade to the existing particle time-of-flight (pTOF) diagnostic, which records bang times using DD or DT neutrons with an accuracy better than ±70 ps [H. G. Rinderknecht et al., Rev. Sci. Instrum. 83, 10D902 (2012)]. The inclusion of a deflecting magnet will increase D(3)He-proton signal-to-background by a factor of 1000, allowing for the first time simultaneous measurements of shock- and compression-bang times in D(3)He-filled surrogate implosions at the NIF.
ISSN:0034-6748
1089-7623
DOI:10.1063/1.4886775