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

Authors :
Alex Zylstra
R. D. Petrasso
N. Sinenian
J. R. Rygg
C. Bailey
Milton J. Shoup
A. House
C. K. Li
John Kline
A. Agliata
Harry Robey
J. R. Kimbrough
Michael Rosenberg
R. E. Olson
A. J. Mackinnon
Cheryl Li
Christian Stoeckl
Tilo Döppner
J. D. Kilkenny
V. U. Glebov
J. Magoon
N. Meezan
Johan Frenje
H.-S. Park
Sebastien LePape
Hong Sio
T. C. Sangster
Perry M. Bell
M. Gatu Johnson
S. Ayers
R. A. Zacharias
J. Parat
Matthias Hohenberger
Hans Rinderknecht
Otto Landen
Fredrick Seguin
Thomas E. Clancy
R. Bionta
Source :
Review of Scientific Instruments. 85:11D901
Publication Year :
2014
Publisher :
AIP Publishing, 2014.

Abstract

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.

Details

ISSN :
10897623 and 00346748
Volume :
85
Database :
OpenAIRE
Journal :
Review of Scientific Instruments
Accession number :
edsair.doi.dedup.....db41d76d1b47db4de8d580aba7589305
Full Text :
https://doi.org/10.1063/1.4886775