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Dust in fusion devices: The state of theory and modeling

Published online by Cambridge University Press:  15 January 2010

S. I. KRASHENINNIKOV
Affiliation:
University of California at San Diego, La Jolla, CA, USA ([email protected])
R. D. SMIRNOV
Affiliation:
University of California at San Diego, La Jolla, CA, USA ([email protected])
A. YU. PIGAROV
Affiliation:
University of California at San Diego, La Jolla, CA, USA ([email protected])
T. K. SOBOLEVA
Affiliation:
ICN, Universidad Nacional Autónoma de México, México D. F., México
D. A. MENDIS
Affiliation:
University of California at San Diego, La Jolla, CA, USA ([email protected])

Abstract

Dust in fusion plasma is a quickly developing field. In this paper the current states of theory and modeling of dust in fusion plasma are discussed and their results compared with available experimental data.

Type
Papers
Copyright
Copyright © Cambridge University Press 2010

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References

[1]Winter, J. 2004 Plasma Phys. Control. Fusion 46, B583.CrossRefGoogle Scholar
[2]Krasheninnikov, S. I. et al. 2008 Plasma Phys. Control. Fusion 50, 124 054.CrossRefGoogle Scholar
[3]Saito, K. et al. 2007 J. Nucl. Mater. 363–365, 1323.CrossRefGoogle Scholar
[4]Ekedahl, A. et al. Oct. 13–18, 2008 Operational limits during high power long pulses in Tore Supra. In: The 22nd IAEA Fusion Energy Conference, Geneva, Switzerland, paper EX/P4-2.Google Scholar
[5]Girard, J.-Ph. et al. 2007 Fusion Eng. Des. 82, 506.CrossRefGoogle Scholar
[6]Shimomura, Y. 2007 J. Nucl. Mater. 363–365, 467.CrossRefGoogle Scholar
[7]Rudakov, D. L. et al. 2008 Rev. Sci. Instrum. 79, 10F303.CrossRefGoogle Scholar
[8]Ratynskaia, S. et al. 2008 Plasma Phys. Control. Fusion 50, 124 046.CrossRefGoogle Scholar
[9]Roubin, P. et al. 2009 J. Nucl. Mater. 390–391, 49.CrossRefGoogle Scholar
[10]West, W. P. et al. 2006 Plasma Phys. Control. Fusion 48, 1661; 2007 J. Nucl. Materials 363–365, 107.CrossRefGoogle Scholar
[11]Roquemore, A. L. et al. 2007 J. Nucl. Mater. 363–365, 222.CrossRefGoogle Scholar
[12]Rudakov, D. L. et al. 2009 Nucl. Fusion 49, 085 022.CrossRefGoogle Scholar
[13]Smirnov, R. D. et al. 2007 Plasma Phys. Control. Fusion 49, 347.CrossRefGoogle Scholar
[14]Shukla, P. K. and Mamun, A. A. 2002 Introduction to Dusty Plasma Physics. Bristol: Institute of Physics.CrossRefGoogle Scholar
[15]Fortov, V. E. et al. 2005 Phys. Rep. 421, 1.CrossRefGoogle Scholar
[16]Morfill, G. E. and Ivlev, A. V. 2006 Rev. Mod. Phys. 81, 1353.CrossRefGoogle Scholar
[17]Hutchinson, I. H. 2003 Plasma Phys. Control. Fusion 45, 1477; 47 (2005) 71.CrossRefGoogle Scholar
[18]Pigarov, A. Yu. et al. 2005 Phys. Plasmas 12, 122508.CrossRefGoogle Scholar
[19]Martin, J. D. et al. 2008 EPL 83, 65001.CrossRefGoogle Scholar
[20]Krasheninnikov, S. I. et al. 2004 Phys. Plasmas 11, 3141.CrossRefGoogle Scholar
[21]Nedospasov, A. V. and Petrov, V. G. 1983 Doklady Akad. Nauk 269, 603 (in Russian).Google Scholar
[22]Eckstain, W. 1991 Suppl. Nucl. Fusion 1, 17; Tahada, T., Ito, R., Morita, K. and Tawara, H. 1985 Nucl. Instrum. Methods B 9, 113.Google Scholar
[23]Krasheninnikov, S. I. and Mendis, D. A. 2009 submitted to Phys. Plasmas.Google Scholar
[24]Zhdanov, V. M. 2002 Transport processes in multicomponent plasma. New York: Taylor and Francis Inc..CrossRefGoogle Scholar
[25]Krasheninnikov, S. I. et al. 2010 to appear in Contrib. Plasma Phys.Google Scholar
[26]Smirnov, R. D. et al. 2009 Plasma Phys. Control. Fusion 51, 055017.CrossRefGoogle Scholar
[27]Sato, N. 2005 In: AIP Conference Proceeding 799. New York: AIP, pp. 97.CrossRefGoogle Scholar
[28]Tsytovich, V. N., Sato, N. and Morfill, G. E. 2003 New J. Phys. 5, 43.CrossRefGoogle Scholar
[29]Hutchinson, I. 2004 New J. Phys. 6, 43.CrossRefGoogle Scholar
[30]Krasheninnikov, S. I.Shevchenko, V. I. and Shukla, P. K. 2007 Phys. Lett. A 361, 133.CrossRefGoogle Scholar
[31]Krasheninnikov, S. I. 2006 Phys. Plasmas 13, 114502.CrossRefGoogle Scholar
[32]Smirnov, R. D. et al. 2007 Numerical modeling of dust spinning in a magnetized plasma. In: 34th EPS Conference on Plasma Phys. Warsaw, 2–6 July 2007 ECA. Vol. 31F, pp. 2.091.Google Scholar
[33]Milora, S. L. et al. 1995 Nucl. Fusion 35, 657.CrossRefGoogle Scholar
[34]Krasheninnikov, S. I. and Smirnov, R. D. 2009 Phys. Plasmas 16, 114 501.CrossRefGoogle Scholar
[35]Smirnov, R. D. et al. 2009 J. Nucl. Mater. 390–391, 84.CrossRefGoogle Scholar
[36]Krasheninnikov, S. I. and Soboleva, T. K. 2005 Plasma Phys. Control. Fusion 47, A339.CrossRefGoogle Scholar
[37]Counsell, G. F. 2004 private communication.Google Scholar
[38]Krasheninnikov, S. I. et al. 2006 In: 21st IAEA Fusion Energy Conference, 16–21 October 2006, China: Chengdu, IAEA-CN-149/TH/P6-18.Google Scholar
[39]Matyash, K. et al. 2007 J. Nucl. Mater. 363–365, 458.CrossRefGoogle Scholar
[40]Pattacchini, L. and Hutchinson, I. 2007 Phys. Plasmas 14, 062111.CrossRefGoogle Scholar