Richard Majeski
Princeton Plasma Physics Laboratory
243 Papers
1.9K Citations
Richard Majeski is an academic researcher from Princeton Plasma Physics Laboratory. The author has contributed to research in topics: Tokamak & Plasma. The author has an hindex of 37, co-authored 236 publications. Previous affiliations of Richard Majeski include Oak Ridge National Laboratory & Princeton University.
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Papers
Analysis of RF sheath interactions in TFTR
D. A. D’Ippolito,James Myra,J. H. Rogers,K. W. Hill,J. C. Hosea,Richard Majeski,G. Schilling,James R. Wilson,G. R. Hanson,A.C. England,John B Wilgen +10 more
TL;DR: In this article, the analysis of ICRF antenna-edge plasma interactions in the TFTR tokamak was carried out using a new numerical method for computing the three dimensional (3-D) rf sheath voltage distribution.
Overview of the initial NSTX experimental results
Masayuki Ono,M.G. Bell,R. E. Bell,T.S. Bigelow,Manfred Bitter,W. Blanchard,D. S. Darrow,E.D. Fredrickson,David Gates,Larry R. Grisham,J. C. Hosea,David Johnson,Robert Kaita,Stanley Kaye,S. Kubota,H.W. Kugel,B.P. LeBlanc,Rajesh Maingi,Ricardo Maqueda,E. Mazzucato,Jonathan Menard,D. Mueller,B. A. Nelson,C. Neumeyer,F. Paoletti,S.F. Paul,Yueng Kay Martin Peng,S. Ramakrishnan,R. Raman,P.M. Ryan,S.A. Sabbagh,C.H. Skinner,T. Stevenson,Dan Stutman,D.W. Swain,E. J. Synakowski,G. Taylor,A. von Halle,John B Wilgen,M. Williams,James R. Wilson,Stewart Zweben,R. Ackers,R. E. Barry,Abraham Bers,J.M. Bialek,P.T. Bonoli,Mark D. Carter,J. Chrzanowski,W. Davis,E. J. Doyle,L. Dudek,P. C. Efthimion,R. A. Ellis,J.R. Ferron,Michael Finkenthal,E. Fredd,T. Gibney,Robert James Goldston,R. Hatcher,R.J. Hawryluck,H. Hayashiya,K. W. Hill,Thomas Jarboe,Stephen Jardin,Hantao Ji,M. Kalish,P. H. LaMarche,L.L. Lao,K. C. Lee,Fred Levinton,Neville C. Luhmann,Richard Majeski,J. Manickam,R. Marsala,T. K. Mau,B. McCormack,S. S. Medley,M.M. Menon,Osamu Mitarai,Masayoshi Nagata,Nobuhiro Nishino,G. Oliaro,Hyeon K. Park,R. Parsells,G. Pearson,T. Peebles,C. K. Phillips,R. I. Pinsker,G.D. Porter,Abhay K. Ram,J. Robinson,P. Roney,A. L. Roquemore,A. Rosenberg,M.J. Schaffer,Syun'ichi Shiraiwa,P. Sichta,D.P. Stotler,B. C. Stratton,Yuichi Takase,William R. Wampler,G. A. Wurden,Xueqiao Xu,J.G. Yang,Lei Zeng,W. Zhu +106 more
TL;DR: The National Spherical Torus Experiment (NSTX) as discussed by the authors was the first experiment to establish the fusion physics principles of the spherical torus (ST) concept, and the NSTX device began plasma operations in February 1999 and the plasma current Ip was successfully brought up to the design value of 1-MA on 14 December 1999.
The national spherical torus experiment (NSTX) research programme and progress towards high beta, long pulse operating scenarios
E. J. Synakowski,M.G. Bell,R. E. Bell,T.S. Bigelow,Manfred Bitter,W. Blanchard,J.A. Boedo,Clarisse Bourdelle,C.E. Bush,D. S. Darrow,P. C. Efthimion,E.D. Fredrickson,David Gates,Mark Gilmore,Larry R. Grisham,J. C. Hosea,David Johnson,Robert Kaita,Stanley Kaye,S. Kubota,H.W. Kugel,B.P. LeBlanc,K. C. Lee,Rajesh Maingi,J. Manickam,Ricardo Maqueda,E. Mazzucato,S. S. Medley,Jonathan Menard,D. Mueller,Brian Nelson,C. Neumeyer,Masayuki Ono,F. Paoletti,Hyeon K. Park,S.F. Paul,Yueng Kay Martin Peng,C. K. Phillips,S. Ramakrishnan,Roger Raman,A. L. Roquemore,A. Rosenberg,P.M. Ryan,S.A. Sabbagh,C.H. Skinner,Vlad Soukhanovskii,T. Stevenson,Dan Stutman,D.W. Swain,G. Taylor,A. von Halle,John B Wilgen,M. Williams,James R. Wilson,Stewart Zweben,R.J. Akers,R. E. Barry,Peter Beiersdorfer,J.M. Bialek,B. Blagojevic,P.T. Bonoli,R.V. Budny,Mark D. Carter,Choong-Seock Chang,J. Chrzanowski,W. Davis,B. H. Deng,E.J. Doyle,L. Dudek,Jan Egedal,R. A. Ellis,J.R. Ferron,Michael Finkenthal,J. Foley,E. Fredd,Alan H. Glasser,T. Gibney,Robert James Goldston,R. W. Harvey,R. Hatcher,R.J. Hawryluk,William Heidbrink,K. W. Hill,Wayne A Houlberg,Thomas Jarboe,Stephen Jardin,Hantao Ji,M. Kalish,J. Lawrance,L.L. Lao,K.C. Lee,Fred Levinton,Neville C. Luhmann,Richard Majeski,R. Marsala,D. Mastravito,T. K. Mau,B. McCormack,M.M. Menon,Osamu Mitarai,Masayoshi Nagata,Nobuhiro Nishino,M. Okabayashi,G. Oliaro,D. Pacella,R. Parsells,T. Peebles,B. Peneflor,D. Piglowski,R.I. Pinsker,G.D. Porter,Abhay K. Ram,M. H. Redi,M. Rensink,G. Rewoldt,J. Robinson,P. Roney,M.J. Schaffer,Ker-Chung Shaing,Syun'ichi Shiraiwa,P. Sichta,D.P. Stotler,B. C. Stratton,Yuichi Takase,Xian-Zhu Tang,R. Vero,William R. Wampler,G. A. Wurden,X.Q. Xu,J.G. Yang,Lei Zeng,W. Zhu +131 more
TL;DR: In this article, the viability of long, high bootstrap current fraction operations has been established for ELMing H mode plasmas with toroidal beta values in excess of 15% and sustained for several current relaxation times.
Overview of recent physics results from the National Spherical Torus Experiment (NSTX)
J.E. Menard,M. G. Bell,R. E. Bell,S. Bernabei,J.M. Bialek,T. M. Biewer,W. R. Blanchard,J.A. Boedo,C.E. Bush,Mark D. Carter,Wonho Choe,Neal Crocker,D.S. Darrow,W. Davis,L. F. Delgado-Aparicio,S. J. Diem,Calvin Domier,D. A. D'Ippolito,J.R. Ferron,A. R. Field,J. Foley,E.D. Fredrickson,D.A. Gates,T. Gibney,R. W. Harvey,R. Hatcher,William Heidbrink,K. W. Hill,J.C. Hosea,Thomas Jarboe,David W. Johnson,R. Kaita,Stanley Kaye,Charles Kessel,S. Kubota,H.W. Kugel,J. Lawson,B. LeBlanc,K. C. Lee,Fred Levinton,Neville C. Luhmann,Rajesh Maingi,Richard Majeski,J. Manickam,D. K. Mansfield,R.J. Maqueda,R. Marsala,D. Mastrovito,T. K. Mau,E. Mazzucato,S. S. Medley,H. F. Meyer,D. R. Mikkelsen,D. Mueller,Tobin Munsat,J.R. Myra,B. A. Nelson,C. Neumeyer,Nobuhiro Nishino,M. Ono,Hyeon K. Park,W. Park,S. F. Paul,T. Peebles,M. Peng,C. K. Phillips,A. Pigarov,R.I. Pinsker,Abhay K. Ram,S. Ramakrishnan,Roger Raman,David A Rasmussen,M. H. Redi,M.E. Rensink,G. Rewoldt,J. Robinson,P. Roney,A. L. Roquemore,E. Ruskov,P.M. Ryan,S.A. Sabbagh,H. Schneider,C.H. Skinner,David R. Smith,Aaron Sontag,Vlad Soukhanovskii,T. Stevenson,D. P. Stotler,Brentley Stratton,Dan Stutman,D.W. Swain,E. J. Synakowski,Yuichi Takase,G. Taylor,Kevin Tritz,A. von Halle,M. R. Wade,Roscoe White,John B Wilgen,M. Williams,J. R. Wilson,Howard Yuh,Leonid E. Zakharov,W. Zhu,S. J. Zweben,R. J. Akers,Peter Beiersdorfer,Riccardo Betti,T.S. Bigelow,Manfred Bitter,P.T. Bonoli,Clarisse Bourdelle,Choong-Seock Chang,J. Chrzanowski,L. Dudek,P. C. Efthimion,Michael Finkenthal,E. Fredd,Guoyong Fu,Alan H. Glasser,Robert James Goldston,N. L. Greenough,L. R. Grisham,N. N. Gorelenkov,Luca Guazzotto,R. J. Hawryluk,J.T. Hogan,Wayne A Houlberg,D.A. Humphreys,F. Jaeger,M. Kalish,Sergei Krasheninnikov,L.L. Lao,J. Lawrence,J.A. Leuer,D. W. Liu,G. Oliaro,D. Pacella,R. Parsells,M.J. Schaffer,I.B. Semenov,Ker-Chung Shaing,Michael A. Shapiro,Kouji Shinohara,P. Sichta,Xian-Zhu Tang,R. Vero,M.L. Walker,William R. Wampler +148 more
TL;DR: The National Spherical Torus Experiment (NSTX) has made considerable progress in advancing the scientific understanding of high performance long-pulse plasmas needed for future spherical torus (ST) devices and ITER.
Mode conversion heating and current drive experiments in TFTR.
Richard Majeski,J. H. Rogers,S. H. Batha,R.V. Budny,E.D. Fredrickson,B. Grek,K. W. Hill,J. C. Hosea,B.P. LeBlanc,Fred Levinton,M. Murakami,C. K. Phillips,A. T. Ramsey,G. Schilling,G. Taylor,James R. Wilson,M. C. Zarnstorff +16 more
TL;DR: The first experimental demonstration that mode conversion from the fast magnetosonic wave to an ion Bernstein wave can efficiently heat electrons and drive current with low field side antennas in a tokamak plasma is reported.
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