English

Sustained neutron production from a sheared-flow stabilized Z-pinch

Plasma Physics 2019-04-10 v4

Abstract

The sheared-flow stabilized ZZ-pinch has demonstrated long-lived plasmas with fusion-relevant parameters. This Letter presents the first experimental results demonstrating sustained, quasi-steady-state neutron production from the Fusion ZZ-pinch Experiment (FuZE), operated with a mixture of 20% deuterium/80% hydrogen by volume. Neutron emissions lasting approximately 5 μ5~\mus are reproducibly observed with pinch currents of approximately 200200 kA during an approximately 16 μ16~\mus period of plasma quiescence. The average neutron yield is estimated to be (1.25±0.45)×105\left ( 1.25\pm 0.45 \right )\times 10^{5} neutrons/pulse and scales with the square of the deuterium concentration. Coincident with the neutron signal, plasma temperatures of 121-2 keV, and densities of approximately 101710^{17} cm3^{-3} with 0.30.3 cm pinch radii are measured with fully-integrated diagnostics.

Cite

@article{arxiv.1806.05894,
  title  = {Sustained neutron production from a sheared-flow stabilized Z-pinch},
  author = {Y. Zhang and U. Shumlak and B. A. Nelson and R. P. Golingo and T. R. Weber and A. D. Stepanov and E. L. Claveau and E. G. Forbes and Z. T. Draper and J. M. Mitrani and H. S. McLean and K. K. Tummel and D. P. Higginson and C. M. Cooper},
  journal= {arXiv preprint arXiv:1806.05894},
  year   = {2019}
}

Comments

5 pages and 6 figures

R2 v1 2026-06-23T02:31:05.977Z