On thermonuclear ignition criterion at the National Ignition Facility

Sustained thermonuclear fusion at the National Ignition Facility remains elusive. Although recent experiments approached or exceeded the anticipated ignition thresholds, the nuclear performance of the laser-driven capsules was well below predictions in terms of energy and neutron production. Such di...

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Veröffentlicht in:Physics of plasmas 2014-10, Vol.21 (10)
Hauptverfasser: Cheng, Baolian, Kwan, Thomas J. T., Wang, Yi-Ming, Batha, Steven H.
Format: Artikel
Sprache:eng
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Zusammenfassung:Sustained thermonuclear fusion at the National Ignition Facility remains elusive. Although recent experiments approached or exceeded the anticipated ignition thresholds, the nuclear performance of the laser-driven capsules was well below predictions in terms of energy and neutron production. Such discrepancies between expectations and reality motivate a reassessment of the physics of ignition. We have developed a predictive analytical model from fundamental physics principles. Based on the model, we obtained a general thermonuclear ignition criterion in terms of the areal density and temperature of the hot fuel. This newly derived ignition threshold and its alternative forms explicitly show the minimum requirements of the hot fuel pressure, mass, areal density, and burn fraction for achieving ignition. Comparison of our criterion with existing theories, simulations, and the experimental data shows that our ignition threshold is more stringent than those in the existing literature and that our results are consistent with the experiments.
ISSN:1070-664X
1089-7674
DOI:10.1063/1.4898734