Fusion-neutron measurements for magnetized liner inertial fusion experiments on the Z accelerator
Fusion-neutron measurements for magnetized liner inertial fusion experiments on the Z accelerator
复制标题
Z 加速器上磁化线性惯性聚变实验的聚变中子测量
DOI:
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发表时间:
2016
期刊:
影响因子:
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通讯作者:
R. Vesey
中科院分区:
文献类型:
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作者:
K. Hahn;G. Chandler;C. Ruiz;G. Cooper;M. Gomez;S. Slutz;A. Sefkow;D. Sinars;S. Hansen;P. Knapp;P. Schmit;E. Harding;C. Jennings;T. Awe;M. Geissel;D. Rovang;J. Torres;J. Bur;M. Cuneo;V. Glebov;A. Harvey;M. Herrman;M. Hess;O. Johns;B. Jones;D. Lamppa;J. Lash;M. Martin;R. Mcbride;K. Peterson;J. Porter;J. Reneker;G. Robertson;G. Rochau;M. Savage;I. Smith;J. Styron;R. Vesey
Several magnetized liner inertial fusion (MagLIF) experiments have been conducted on the Z accelerator at Sandia National Laboratories since late 2013. Measurements of the primary DD (2.45 MeV) neutrons for these experiments suggest that the neutron production is thermonuclear. Primary DD yields up to 3e12 with ion temperatures ∼2-3 keV have been achieved. Measurements of the secondary DT (14 MeV) neutrons indicate that the fuel is significantly magnetized. Measurements of down-scattered neutrons from the beryllium liner suggest ρRliner∼1g/cm2. Neutron bang times, estimated from neutron time-of-flight (nTOF) measurements, coincide with peak x-ray production. Plans to improve and expand the Z neutron diagnostic suite include neutron burn-history diagnostics, increased sensitivity and higher precision nTOF detectors, and neutron recoil-based yield and spectral measurements.