New PDF release: Advances and Challenges in Computational Plasma Science

New PDF release: Advances and Challenges in Computational Plasma Science

By W.M. Tang; V.S. Chan; USDOE Office of Science (SC) (US); Princeton University. Plasma Physics Laboratory.; United States. Dept. of Energy. Office of Scientific and Technical Information

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Extra info for Advances and Challenges in Computational Plasma Science

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Gov/fed/scidacrf/, (2001) [48] Perkins F W 1977 Nuclear Fusion 17 1197. 35 [49] Nelson-Melby E et al 2003 Phys. Rev. Lett. 90 155004 [50] Jaeger E F et al 2001 Phys. Plasmas 8 1573; Jaeger E F et al 2002 Phys. Plasmas 9 1873 [51] Lieberman M et al 1994 “Design of High-Density Sources for Materials Processing,” in Plasma Sources for Thin Film Deposition and Etching ed Francombe M H and Vossen J L (San Diego: Academic Press) [52] Chang-Diaz F Nov. 2000 “The VASIMR Rocket” Scientific American p. 90 [53] Cranmer S R 2000 Astrophys.

Plasmas 10 126 [42] Dimits A M et al 2000 Phys. Plasmas 7 969 [43] Itoh K, Itoh S-I, and Fukuyama A 1984 Nuclear Fusion 24 13; Villard L 1986 Comput. Phys. Rep. 4 95 [44] Brambilla M and Krücken T 1988 Nuclear Fusion 28 1813; Brambilla M 1999 Plasma Phys. Control. Fusion 41 1 [45] Wright J C et al 2004 Phys. Plasmas 11 2473 [46] Bonoli P T et al 2000 Proc. 18th IAEA Fusion Energy Conf. 2000 (Sorrento, Italy) paper EXP4/01 [47] Batchelor D B et al 2002 Proc. 19th IAEA Fusion Energy Conf. gov/fed/scidacrf/, (2001) [48] Perkins F W 1977 Nuclear Fusion 17 1197.

54 Time Temperature Figure 18. Terabytes of data are now generated at remote locations, as for example the heat potential shown here on 121 million grid points from a particle-in-cell turbulence simulation. 55 (a) E z z x f ion s (b) electron s vz Figure 19. 3D particle-in-cell code simulations of dynamics in the magnetic reconnection current layer leading to the generation of localized regions of intense anti-parallel electric field (“electron holes”). 56 (a) (b) Figure 20. Massively parallel supercomputers effectively utilized to design future experimental facilties via optimization of confinement and constructability properties 57 Target plasma Growth of Radial structures Zonal flows and decorrelation Figure 21.

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Advances and Challenges in Computational Plasma Science by W.M. Tang; V.S. Chan; USDOE Office of Science (SC) (US); Princeton University. Plasma Physics Laboratory.; United States. Dept. of Energy. Office of Scientific and Technical Information


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