Plasma and Fusion Research

Volume 14, 2402139 (2019)

Regular Articles


Future Perspectives and Status of Magnetic Mirror Studies in Novosibirsk
Alexandr IVANOV1,2), Petr BAGRYANSKY1), Alexander BURDAKOV1,3) and Dmitri YAKOVLEV1,2)
1)
Budker Institute of Nuclear Physics, Novosibirsk 630090, Russia
2)
Novosibirsk State University, Novosibirsk 630090, Russia
3)
Novosibirsk State Technical University, Novosibirsk, Russia
(Received 15 September 2018 / Accepted 28 June 2019 / Published 14 August 2019)

Abstract

In the paper, we present the Budker Institute long term plans for development of the plasma physics database for an advanced fuel fusion reactor based on the axisymmetric linear magnetic trap. An analysis of the existing database gained in the experiments at the open magnetic systems in the Budker Institute and worldwide is presented. To develop the required database a stepwise approach is applied, which suggests construction of the several experimental devices with progressively increased plasma parameters, which incorporate the different constituents of the approach.


Keywords

plasma, magnetic mirror, gas-dynamic plasma confinement, plasma stability, plasma neutron source

DOI: 10.1585/pfr.14.2402139


References

  • [1] A. Molvik, A. Ivanov, G.L. Kulcinski, D. Ryutov, J. Santarius, T. Simonen, B.D.Wirth and A. Ying, Fusion Sci. Technol. 57, 369 (2010).
  • [2] R.W. Moir, N.N. Martovetsky, A.W. Molvik, D.D. Ryutov and T.C. Simonen, Fusion Sci. Technol. 61(1T), 206 (2012).
  • [3] A.A. Ivanov and V.V. Prikhodko, Plasma Phys. Control. Fusion 55, 063001 (2013).
  • [4] A.D. Beklemishev, A.V. Anikeev, A.V. Burdakov et al., AIP Conf. Proc. 1442, 147 (2012).
  • [5] A.D. Beklemishev, Phys. Plasmas 23, 082506 (2016).
  • [6] A. Beklemishev, Fusion Sci. Technol. 63, 355 (2013).
  • [7] A. Beklemishev, AIP Conf. Proc. 1771, 040006 (2016).
  • [8] R.F. Post, Nucl. Fusion 27, 1579 (1987).
  • [9] A. Ivanov, E. Kruglyakov, Yu. Tsidulko, V. Krasnoperov and V. Korshakov, IEEE 16, 66 (1995).
  • [10] U. Fischer, A. Moeslang and A.A. Ivanov, Trans. Fusion Technol. 35(1T), 160 (1999).
  • [11] P. Bagryansky et al., Phys. Rev. Lett. 114, 205001 (2015).
  • [12] G.I. Dimov, Physics-Uspekhi 48, 1129 (2005).
  • [13] T.D. Akhmetov et al., Plasma Phys. Reports 28, 750 (2002).
  • [14] A.V. Burdakov and V.V. Postupaev, Physics-Uspekhi 61, 582 (2018).
  • [15] A.V. Anikeev, P.A. Bagryansky, A.A. Ivanov et al., Plasma Phys. Control. Fusion 34(7), 1185 (2000).
  • [16] V.V. Mirnov and D.D. Ryutov, Plasma Phys. Itogi 8, 77 (1988). (in Russian).
  • [17] A. Anikeev, P. Bagryansky, P. Deichuli, A. Ivanov, A. Karpushov, V. Maximov, A. Pod'minogin, N. Stupishin and Yu. Tsidulko, Phys. Plasmas 4, 347 (1997).
  • [18] A. Ivanov, A. Anikeev, P. Bagryansky et al., Phys. Rev. Lett. 90(10), 105002 (2003).
  • [19] A. Beklemishev, P. Bagryansky, M. Chaschin and E. Soldatkina, Fusion Sci. Technol. 57, 351 (2010).
  • [20] A. Ivanov and V. Prikhodko, Physics-Uspekhi 60(5), 509 (2017).
  • [21] A.A. Ivanov, A.V. Burdakov, P.A. Bagryansky and A.D. Beklemishev, 11th Int. Conference on Open Magnetic Systems for Plasma Confinement, Book of Abstracts, p.86, (2016).
  • [22] A.V. Postupaev et al., Fusion Sci. Technol. 51(2T), 180 (2015).