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NSTX-U

NSTX-U

Princeton, USA

The National Spherical Torus Experiment-Upgrade (NSTX-U) is the primary fusion experiment at PPPL. The spherical device is shaped more like a cored apple than the doughnut-like shape of conventional tokamaks and can produce high-pressure plasmas — essential ingredients for fusion reactions — with relatively low and cost-effective magnetic fields.

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#核融合16#トカマク8#プラズマ物理7#NSTX7#NSTX-U6#プラズマ制御4#プラズマ乱流4#ジャイロ運動論3#ダイバータ3#スフェリカルトカマク3

関連論文数 443 件

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年別論文数推移

信頼度別論文数

中精度マッチ中精度50件

The impact of kinetic and global effects on ideal ballooning 2nd stable pedestals of conventional and low aspect-ratio tokamaks
M.S. Anastopoulos Tzanis, M. Yang, A. Kleiner, J.F. Parisi, G.M. Staebler, P.B. SnyderNuclear Fusion2026
中精度概要文一致AI要約あり
Plasma self-driven current in tokamaks with magnetic islands
W.X. Wang, M.G. Yoo, E.A. Startsev, S. Kaye, S. Ethier, J. ChenNuclear Fusion2025
中精度概要文一致AI要約あり
The impact of E × B shear on microtearing based transport in spherical tokamaks
高精度

300

低精度

47

中精度

96

最新論文

Nuclear Fusion2026

Current ramp-up studies for NSTX-U in support of the development of non-inductive current ramp-up scenarios in STs

R. Raman, M. Ono, S.C. Jardin, J. Breslau, S.M. Kaye, M. Gorelenkova, T. Rafiq, A. Pankin

Nuclear Fusion2026

The impact of kinetic and global effects on ideal ballooning 2nd stable pedestals of conventional and low aspect-ratio tokamaks

M.S. Anastopoulos Tzanis, M. Yang, A. Kleiner, J.F. Parisi, G.M. Staebler, P.B. Snyder

Nuclear Fusion2026

Numerical assessment of the impact of the guiding-centre approximation on fast ion simulations in NSTX

I. Dolby, M. Cecconello, J. Yang, M. Podestà, S. Kaye

B.S. Patel, M.R. Hardman, D. Kennedy, M. Giacomin, D. Dickinson, C.M. RoachNuclear Fusion2025
中精度概要文一致AI要約あり
A study of resistive peeling–ballooning modes across spherical tokamaks
A Kleiner, K Imada, F Ebrahimi, N M Ferraro, S R Haskey, L Kogan, A PankinPlasma Physics and Controlled Fusion2025
中精度概要文一致AI要約あり
Determining the validity of tokamak perturbed equilibrium modeling using nonlinear equilibria
J. Halpern, N.C. Logan, E. Paul, C. Paz-SoldanNuclear Fusion2025
中精度概要文一致AI要約あり
Investigation of radiated-power for low aspect ratio fusion plasmas
K Shah, J W Berkery, J E Menard, L F Delgado-Aparicio, M Ono, E EmdeePlasma Physics and Controlled Fusion2025
中精度概要文一致AI要約あり
Kinetic-ballooning-limited pedestals in spherical tokamak plasmas
J.F. Parisi, W. Guttenfelder, A.O. Nelson, R. Gaur, A. Kleiner, M. Lampert, G. Avdeeva, J.W. Berkery, C. Clauser, M. CurieNuclear Fusion2024
中精度概要文一致AI要約あり
DECAF cross-device characterization of tokamak disruptions indicated by abnormalities in plasma vertical position and current
V. Zamkovska, S.A. Sabbagh, M. Tobin, J.W. Berkery, J.D. Riquezes, Y.S. Park, K. Erickson, J. Butt, J.G. Bak, J. KimNuclear Fusion2024
中精度概要文一致AI要約あり
Vertical instability forecasting and controllability assessment of multi-device tokamak plasmas in DECAF with data-driven optimization
M Tobin, S A Sabbagh, V Zamkovska, J D Riquezes, J Butt, G Cunningham, L Kogan, J Measures, S Blackmore, C HamPlasma Physics and Controlled Fusion2024
中精度概要文一致
Density limits as disruption forecasters for spherical tokamaks
J W Berkery, S A Sabbagh, C J Ham, V Zamkovska, J Butt, J Riquezes, M Tobin, S Henderson, L Kogan, B S PatelPlasma Physics and Controlled Fusion2023
中精度概要文一致
Avalanche transport of energetic-ions in magnetic confinement plasmas: nonlinear multiple wave-number simulation
X.L. Zhu, W. Chen, M. Podestà, F. Wang, D. Liu, Z.X. WangNuclear Fusion2022被引用: 11
中精度概要文一致
Experimental validation of universal plasma blob formation mechanism
N. Bisai, Santanu Banerjee, S.J. Zweben, A. SenNuclear Fusion2022被引用: 10
中精度概要文一致
Fusion performance of spherical and conventional tokamaks: implications for compact pilot plants and reactors
A E Costley, S A M McNamaraPlasma Physics and Controlled Fusion2021
中精度概要文一致
Suppression of edge localized modes with real-time boron injection using the tungsten divertor in EAST
Z. Sun, A. Diallo, R. Maingi, Y.Z. Qian, K. Tritz, Y.F. Wang, Y.M. Wang, A. Bortolon, A. Nagy, L. ZhangNuclear Fusion2021被引用: 34
中精度概要文一致
Breakdown of adiabatic invariance of fast ions in spherical tokamaks
D.F. Escande, F. SattinNuclear Fusion2021被引用: 6
中精度概要文一致
Importance of resistivity on edge-localized mode onset in spherical tokamaks
A. Kleiner, N.M. Ferraro, A. Diallo, G.P. CanalNuclear Fusion2021被引用: 9
中精度概要文一致
Hybrid simulations of sub-cyclotron compressional and global Alfvén eigenmode stability in spherical tokamaks
J.B. Lestz, E.V. Belova, N.N. GorelenkovNuclear Fusion2021被引用: 5
中精度概要文一致
Exploring the regime of validity of global gyrokinetic simulations with spherical tokamak plasmas
Y. Ren, W.X. Wang, W. Guttenfelder, S.M. Kaye, J. Ruiz-Ruiz, S. Ethier, R. Bell, B.P. LeBlanc, E. Mazzucato, D.R. SmithNuclear Fusion2020被引用: 8
中精度概要文一致
Physics-guided machine learning approaches to predict the ideal stability properties of fusion plasmas
A. Piccione, J.W. Berkery, S.A. Sabbagh, Y. AndreopoulosNuclear Fusion2020被引用: 47
中精度概要文一致
On the energy confinement time in spherical tokamaks: implications for the design of pilot plants and fusion reactors
P F Buxton, J W Connor, A E Costley, M P Gryaznevich, S McNamaraPlasma Physics and Controlled Fusion2019
中精度概要文一致
Resolving interactions between ion-cyclotron range of frequencies heating and the scrape-off layer plasma in EAST using divertor probes
R J Perkins, J C Hosea, G Taylor, N Bertelli, G J Kramer, Z P Luo, C M Qin, L Wang, J C Xu, X J ZhangPlasma Physics and Controlled Fusion2019
中精度概要文一致
3D two-temperature magnetohydrodynamic modeling of fast thermal quenches due to injected impurities in tokamaks
N.M. Ferraro, B.C. Lyons, C.C. Kim, Y.Q. Liu, S.C. JardinNuclear Fusion2019被引用: 37
中精度概要文一致
Reduced energetic particle transport models enable comprehensive time-dependent tokamak simulations
M. Podestà, L. Bardóczi, C.S. Collins, N.N. Gorelenkov, W.W. Heidbrink, V.N. Duarte, G.J. Kramer, E.D. Fredrickson, M. Gorelenkova, D. KimNuclear Fusion2019被引用: 13
中精度概要文一致
Thermal energy confinement at the Globus-M spherical tokamak
G.S. Kurskiev, N.N. Bakharev, V.V. Bulanin, F.V. Chernyshev, V.K. Gusev, N.A. Khromov, E.O. Kiselev, V.B. Minaev, I.V. Miroshnikov, E.E. MukhinNuclear Fusion2019被引用: 24
中精度概要文一致
Application of Townsend avalanche theory to tokamak startup by coaxial helicity injection
K.C. Hammond, R. Raman, F.A. VolpeNuclear Fusion2018被引用: 19
中精度概要文一致
Drift kinetic effects on plasma response in high beta spherical tokamak experiments
Zhirui Wang, Jong-Kyu Park, Jonathan E. Menard, Yueqiang Liu, Stanley M. Kaye, Stefan GerhardtNuclear Fusion2018被引用: 6
中精度概要文一致
Developing physics basis for the snowflake divertor in the DIII-D tokamak
V.A. Soukhanovskii, S.L. Allen, M.E. Fenstermacher, C.J. Lasnier, M.A. Makowski, A.G. McLean, W.H. Meyer, D.D. Ryutov, E. Kolemen, R.J. GroebnerNuclear Fusion2018被引用: 15
中精度概要文一致
Energetic particles in spherical tokamak plasmas
K G McClements, E D FredricksonPlasma Physics and Controlled Fusion2017
中精度概要文一致
Effect of 3D magnetic perturbations on divertor conditions and detachment in tokamak and stellarator
J-W Ahn, A R Briesemester, M Kobayashi, J D Lore, O Schmitz, A Diallo, T K Gray, C J Lasnier, B P LeBlanc, R MaingiPlasma Physics and Controlled Fusion2017
中精度概要文一致
Computation of Alfvèn eigenmode stability and saturation through a reduced fast ion transport model in the TRANSP tokamak transport code
M Podestà, M Gorelenkova, N N Gorelenkov, R B WhitePlasma Physics and Controlled Fusion2017
中精度概要文一致
Nonlinear fishbone dynamics in spherical tokamaks
Feng Wang, G.Y. Fu, Wei ShenNuclear Fusion2017被引用: 27
中精度概要文一致
Liquid lithium loop system to solve challenging technology issues for fusion power plant
M. Ono, R. Majeski, M.A. Jaworski, Y. Hirooka, R. Kaita, T.K. Gray, R. Maingi, C.H. Skinner, M. Christenson, D.N. RuzicNuclear Fusion2017被引用: 21
中精度概要文一致
Perturbative momentum transport in MAST L-mode plasmas
W. Guttenfelder, A.R. Field, I. Lupelli, T. Tala, S.M. Kaye, Y. Ren, W.M. SolomonNuclear Fusion2017被引用: 5
中精度概要文一致
Full-wave simulations of ICRF heating regimes in toroidal plasma with non-Maxwellian distribution functions
N. Bertelli, E.J. Valeo, D.L. Green, M. Gorelenkova, C.K. Phillips, M. Podestà, J.P. Lee, J.C. Wright, E.F. JaegerNuclear Fusion2017被引用: 19
中精度概要文一致
Unraveling the plasma-material interface with real time diagnosis of dynamic boron conditioning in extreme tokamak plasmas
F. Javier Domínguez-Gutiérrez, Felipe Bedoya, Predrag S. Krstić, Jean P. Allain, Stephan Irle, Charles H. Skinner, Robert Kaita, Bruce KoelNuclear Fusion2017被引用: 11
中精度概要文一致
Axisymmetric equilibria with pressure anisotropy and plasma flow
A Evangelias, G N ThroumoulopoulosPlasma Physics and Controlled Fusion2016
中精度概要文一致
Full wave simulations of fast wave efficiency and power losses in the scrape-off layer of tokamak plasmas in mid/high harmonic and minority heating regimes
N. Bertelli, E.F. Jaeger, J.C. Hosea, C.K. Phillips, L. Berry, P.T. Bonoli, S.P. Gerhardt, D. Green, B. LeBlanc, R.J. PerkinsNuclear Fusion2016被引用: 24
中精度概要文一致
Fusion nuclear science facilities and pilot plants based on the spherical tokamak
J.E. Menard, T. Brown, L. El-Guebaly, M. Boyer, J. Canik, B. Colling, R. Raman, Z. Wang, Y. Zhai, P. BuxtonNuclear Fusion2016被引用: 117
中精度概要文一致
Validating predictive models for fast ion profile relaxation in burning plasmas
N.N. Gorelenkov, W.W. Heidbrink, G.J. Kramer, J.B. Lestz, M. Podesta, M.A. Van Zeeland, R.B. WhiteNuclear Fusion2016被引用: 11
中精度概要文一致
Ideal plasma response to vacuum magnetic fields with resonant magnetic perturbations in non-axisymmetric tokamaks
Kimin Kim, J-W Ahn, F Scotti, J-K Park, J E MenardPlasma Physics and Controlled Fusion2015
中精度概要文一致
Distinct turbulence sources and confinement features in the spherical tokamak plasma regime
W.X. Wang, S. Ethier, Y. Ren, S. Kaye, J. Chen, E. Startsev, Z. LuNuclear Fusion2015被引用: 13
中精度概要文一致
Conference Report on the 3rd International Symposium on Lithium Application for Fusion Devices
G. Mazzitelli, Y. Hirooka, J. S. Hu, S.V. Mirnov, R. Nygren, M. Shimada, M. Ono, F.L. TabaresNuclear Fusion2015被引用: 26
中精度概要文一致
Development of gyrotrons for fusion with power exceeding 1 MW over a wide frequency range
T. Kariya, T. Imai, R. Minami, T. Numakura, T. Eguchi, T. Kato, Y. Endo, M. Ichimura, T. Shimozuma, S. KuboNuclear Fusion2015被引用: 16
中精度概要文一致
A procedure for the design of snowflake magnetic configurations in tokamaks
R Albanese, R Ambrosino, M MatteiPlasma Physics and Controlled Fusion2014
中精度概要文一致
Turbulent equipartition pinch of toroidal momentum in spherical torus
T.S. Hahm, J. Lee, W.X. Wang, P.H. Diamond, G.J. Choi, D.H. Na, Y.S. Na, K.J. Chung, Y.S. HwangNuclear Fusion2014被引用: 2
中精度概要文一致
Calculation of neoclassical toroidal viscosity with a particle simulation in the tokamak magnetic braking experiments
K. Kim, J.-K. Park, A.H. Boozer, J.E. Menard, S.P. Gerhardt, N.C. Logan, Z.R. Wang, G.J. Kramer, K.H. Burrell, A.M. GarofaloNuclear Fusion2014被引用: 16
中精度概要文一致
Three-dimensional distortions of the tokamak plasma boundary: boundary displacements in the presence of resonant magnetic perturbations
I.T. Chapman, M. Becoulet, T. Bird, J. Canik, M. Cianciosa, W.A. Cooper, T. Evans, N. Ferraro, C. Fuchs, M. GryaznevichNuclear Fusion2014被引用: 37
中精度概要文一致
Three-dimensional distortions of the tokamak plasma boundary: boundary displacements in the presence of saturated MHD instabilities
I.T. Chapman, D. Brunetti, P. Buratti, W.A. Cooper, J.P. Graves, J.R. Harrison, J. Holgate, S. Jardin, S.A. Sabbagh, K. TritzNuclear Fusion2014被引用: 14
中精度概要文一致
Effects of thermal expansion of the crystal lattice on x-ray crystal spectrometers used for fusion research
L Delgado-Aparicio, M Bitter, Y Podpaly, J Rice, W Burke, M Sanchez del Rio, P Beiersdorfer, R Bell, R Feder, C GaoPlasma Physics and Controlled Fusion2013
中精度概要文一致
A description of the full-particle-orbit-following SPIRAL code for simulating fast-ion experiments in tokamaks
G J Kramer, R V Budny, A Bortolon, E D Fredrickson, G Y Fu, W W Heidbrink, R Nazikian, E Valeo, M A Van ZeelandPlasma Physics and Controlled Fusion2013
中精度概要文一致
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