Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Decker, Joan
and
Ram, Abhay K.
2006.
Relativistic description of electron Bernstein waves.
Physics of Plasmas,
Vol. 13,
Issue. 11,
Pochelon, A.
Mueck, A.
Curchod, L.
Camenen, Y.
Coda, S.
Duval, B.P.
Goodman, T.P.
Klimanov, I.
Laqua, H.P.
Martin, Y.
Moret, J.-M.
Porte, L.
Sushkov, A.
Udintsev, V.S.
and
Volpe, F.
2007.
Electron Bernstein wave heating of over-dense H-mode plasmas in the TCV tokamak via O-X-B double mode conversion.
Nuclear Fusion,
Vol. 47,
Issue. 11,
p.
1552.
Castejón, F.
Cappa, A.
Tereshchenko, M.
Pavlov, S. S.
and
Fernández, A.
2007.
Weakly Relativistic and Nonrelativistic Estimates of EBW Heating in the TJ-II Stellarator.
Fusion Science and Technology,
Vol. 52,
Issue. 2,
p.
230.
Nelson-Melby, E
Harvey, R W
Smirnov, A P
and
Ram, A K
2007.
Relativistic ray-tracing of electron Bernstein waves in a spherical tokamak reactor.
Plasma Physics and Controlled Fusion,
Vol. 49,
Issue. 11,
p.
1913.
Poli, Emanuele
2008.
Recent Developments in the Theory of Electron Cyclotron Waves.
Fusion Science and Technology,
Vol. 53,
Issue. 1,
p.
1.
McGregor, D E
Cairns, R A
Lashmore Davies, C N
and
O'Brien, M R
2008.
Flux averaged current drive efficiency of electron Bernstein waves.
Plasma Physics and Controlled Fusion,
Vol. 50,
Issue. 1,
p.
015003.
Kominis, Y.
Ram, A. K.
and
Hizanidis, K.
2008.
Quasilinear theory of electron transport by radio frequency waves and nonaxisymmetric perturbations in toroidal plasmas.
Physics of Plasmas,
Vol. 15,
Issue. 12,
Shkarofsky, I.
and
Shoucri, M.
2011.
A numerical code for the calculation of relativistic electron cyclotron damping with an arbitrary distribution function at an arbitrary harmonic.
Computer Physics Communications,
Vol. 182,
Issue. 7,
p.
1507.
Urban, Jakub
Decker, Joan
Peysson, Yves
Preinhaelter, Josef
Shevchenko, Vladimir
Taylor, Gary
Vahala, Linda
and
Vahala, George
2011.
A survey of electron Bernstein wave heating and current drive potential for spherical tokamaks.
Nuclear Fusion,
Vol. 51,
Issue. 8,
p.
083050.
Ali, Muddasir
Hussain, Azhar
and
Murtaza, G.
2011.
Relativistic Bernstein waves in a degenerate plasma.
Physics of Plasmas,
Vol. 18,
Issue. 9,
Li, J. C.
Gong, X. Y.
Dong, J. Q.
Zheng, P. W.
Song, S. D.
Gao, Q. D.
and
Du, D.
2015.
Numerical studies of electron cyclotron wave current drive on HL-2A tokamak.
Physics of Plasmas,
Vol. 22,
Issue. 6,
Lopez, N A
and
Poli, F M
2018.
Regarding the optimization of O1-mode ECRH and the feasibility of EBW startup on NSTX-U.
Plasma Physics and Controlled Fusion,
Vol. 60,
Issue. 6,
p.
065007.
Varma, Ashish
and
Kumar, Asheel
2021.
Electron Bernstein wave excitation by beating of two copropagating super-Gaussian laser beam in a collisional nanocluster plasma.
Optik,
Vol. 240,
Issue. ,
p.
166872.
Biswas, Bodhi
Speirs, David
Freethy, Simon
and
Vann, Roddy
2023.
Application of linear electron Bernstein current drive models in reactor-relevant spherical tokamaks.
Nuclear Fusion,
Vol. 63,
Issue. 12,
p.
126011.
Lopez, N. A.
Højlund, R.
and
Senstius, M. G.
2024.
Regarding the extension of metaplectic geometrical optics to modeling evanescent waves in ray-tracing codes.
Physics of Plasmas,
Vol. 31,
Issue. 8,