Effects of residual kinetic energy on yield degradation and ion temperature asymmetries in inertial confinement fusion implosions

Author:

Woo K. M.12ORCID,Betti R.123,Shvarts D.45,Bose A.16ORCID,Patel D.13,Yan R.7,Chang P.-Y.8ORCID,Mannion O. M.12ORCID,Epstein R.1ORCID,Delettrez J. A.1ORCID,Charissis M.1,Anderson K. S.1,Radha P. B.1ORCID,Shvydky A.1,Igumenshchev I. V.1ORCID,Gopalaswamy V.13ORCID,Christopherson A. R.13,Sanz J.9,Aluie H.3

Affiliation:

1. Laboratory for Laser Energetics, University of Rochester, Rochester, New York 14623, USA

2. Department of Physics and Astronomy, University of Rochester, Rochester, New York 14623, USA

3. Department of Mechanical Engineering, University of Rochester, Rochester, New York 14623, USA

4. Department of Mechanical Engineering, Ben Gurion University of the Negev, Beer Sheva 84015, Israel

5. Department of Physics, Nuclear Research Center-Negev, Beer-Sheva 84190, Israel

6. University of Michigan, Ann Arbor, Michigan 48109, USA

7. Department of Modern Mechanics, University of Science and Technology of China, Hefei 230026, China

8. Institute of Space and Plasma Sciences, National Cheng Kung University, Tainan, Taiwan

9. Universidad Politecnica de Madrid, Madrid 28040, Spain

Funder

U.S. Department of Energy

Publisher

AIP Publishing

Subject

Condensed Matter Physics

Reference47 articles.

1. Improved formulas for fusion cross-sections and thermal reactivities

2. T. A. Heltemes , G. A. Moses , and J. F. Santarius , “ Analysis of an improved fusion reaction rate model for use in fusion plasma simulations,” Fusion Technology Institute Report No. UWFDM-1268, 2005.

3. The physical basis for numerical fluid simulations in laser fusion

4. Charged-particle stopping powers in inertial confinement fusion plasmas

5. Fokker-Planck equation for moderately coupled plasmas

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