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JT-60SA

JT-60SA

Naka, Japan

JT-60SA is a joint international fusion experiment being built and operated by Japan and Europe, in Naka, Japan, using infrastructure of the previous JT-60 Upgrade experiment alongside new hardware. SA stands for “super, advanced”, since the experiment will have superconducting coils and study advanced modes of plasma operation.

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#核融合14#JT60SA14#JT-60SA10#トカマク8#ITER4#プラズマ制御4#核融合炉3#プラズマ3#PlasmaPhysics2#プラズマ物理2

関連論文数 439 件

装置分析

ジャーナル別論文数

FED
NF
PPCF
PRL
POP
RSI

年別論文数推移

中精度マッチ中精度15件

Model for improved divertor confinement
G.M. StaeblerNuclear Fusion1990被引用: 4
中精度概要文一致
Progress in the Japanese fusion technology programme
T. IijimaFusion Engineering and Design1989
中精度概要文一致
Japanese program for fusion nuclear technology development
Sigeru MoriFusion Engineering and Design1989
中精度概要文一致

信頼度別論文数

高精度

359

低精度

24

中精度

56

最新論文

Fusion Engineering and Design2026

Code-to-code comparison of SOLPS-ITER and SONIC edge transport codes in JT-60SA tokamak plasma conditions

Giulio Rubino, Shohei Yamoto, David Coster, Gloria Falchetto, ... Nobuyuki Aiba

Nuclear Fusion2026

Development of low inductive electric field plasma start-up in JT-60SA

T. Wakatsuki, H. Urano, M. Yoshida, N. Tsujii, Hyun-Tae Kim, T. Nakano, M. Fukumoto, Y. Ohtani, R. Sano, S. Inoue

Fusion Engineering and Design2026

The centrifuge of the Pellet Launching System for JT-60SA: initial test results

B. Ploeckl, M. Canchado, J.-M. Casalta, O. Casamor, ... S. Yamamoto

Enhancement of fusion power multiplication factor
Setsuo Niikura, Masayuki NagamiFusion Engineering and Design1988
中精度概要文一致
Characteristics of fusion reaction rate and neutron yield in deuterium plasma
Setsuo Niikura, Masayuki Nagami, Hiroshi HoriikeFusion Engineering and Design1988
中精度概要文一致
A matrix transfer function analysis applied to the active feedback control system of a divertor tokamak
M. Kikuchi, H. Ninomiya, R. Yoshino, S. SekiNuclear Fusion1987被引用: 5
中精度概要文一致
Plasma Physics and Controlled Nuclear Fusion Research (Summaries of the 11th IAEA International Conference, Kyoto, 13–20 November 1986)
A. Gibson, T. Sekiguchi, K. Lackner, S. Bodner, R. HancoxNuclear Fusion1987被引用: 3
中精度概要文一致
Method for measuring divertor configuration parameters for feedback control in JT–60
N. Hosogane, H. Ninomiya, S. SekiNuclear Fusion1986被引用: 18
中精度概要文一致
Lifetime Predictions for the First Wall and Blanket Structure of Fusion Reactors: Report on the IAEA Technical Committee Meeting held at Karlsruhe, Federal Republic of Germany, 5–7 November 1985
R. Behrisch, D.R. HarriesNuclear Fusion1986
中精度概要文一致
Tokamak experiments at the Japan Atomic Energy Research Institute
M. TanakaNuclear Fusion1985
中精度概要文一致
Tokamak research at the Japan Atomic Energy Reseach Institute
M TanakaPlasma Physics and Controlled Fusion1984
中精度概要文一致
Electromagnetic theory of an antenna for ICR heating of tokamak plasmas
V.L. VdovinNuclear Fusion1983被引用: 30
中精度概要文一致
Fusion Technology (SOFT): Report on the 11th Symposium, Oxford, 15–19 September 1980
P.J. Harbour, A. MaleinNuclear Fusion1980
中精度概要文一致
Large Tokamak Experiments (Report on the 2nd IAEA Technical Committee Meeting, Princeton, 1976)
D.L. JassbyNuclear Fusion1977被引用: 20
中精度概要文一致
Large Tokamak Experiments (Report on the IAEA Technical Committee Meeting, Dubna, 1975)
A.H. SpanoNuclear Fusion1975被引用: 28
中精度概要文一致

低精度マッチ低精度24件

低精度マッチの論文を表示する(24件)
Symbolic dynamics for disruption prediction in case of data scarcity and diagnostic limitations
Teddy Craciunescu, Andrea Murari, Riccardo Rossi, Jesus Vega, Michela Gelfusa, on behalf of JET Contributors, the EUROfusion Tokamak Exploitation TeamPlasma Physics and Controlled Fusion2025
低精度概要文一致AI要約あり
Quasioptical modeling of the electron cyclotron emission diagnostic
K Yanagihara, S KuboPlasma Physics and Controlled Fusion2024
低精度概要文一致
Real-time disruption prediction in multi-dimensional spaces leveraging diagnostic information not available at execution time
J. Vega, S. Dormido-Canto, R. Castro, J.D. Fernández, A. Murari, JET ContributorsNuclear Fusion2024
低精度概要文一致AI要約あり
Broadening of electron cyclotron power deposition and driven current profiles caused by dissipative diffractive propagation
K. Yanagihara, S. KuboNuclear Fusion2024
低精度概要文一致AI要約あり
A synthetic phase-contrast imaging diagnostic with spatial filtering for gyrokinetic simulations
A Iantchenko, S Coda, S Brunner, G Merlo, J Ball, F MargairazPlasma Physics and Controlled Fusion2023
低精度概要文一致
A new vertical instability predictor via precursor oscillation detection with performance monitoring of equilibrium controller
S. Inoue, Y. Miyata, H. Urano, T. SuzukiNuclear Fusion2022被引用: 1
低精度概要文一致
A linear benchmark between HYMAGYC, MEGA and ORB5 codes using the NLED-AUG test case to study Alfvénic modes driven by energetic particles
G. Vlad, X. Wang, F. Vannini, S. Briguglio, N. Carlevaro, M. V. Falessi, G. Fogaccia, V. Fusco, F. Zonca, A. BiancalaniNuclear Fusion2021被引用: 10
低精度概要文一致
High-power gyrotrons for electron cyclotron heating and current drive
M.K.A. Thumm, G.G. Denisov, K. Sakamoto, M.Q. TranNuclear Fusion2019被引用: 114
低精度概要文一致
Extension of the operating space of high-bN fully non-inductive scenarios on TCV using neutral beam injection
C. Piron, J. Garcia, M. Agostini, M. Fontana, G. Giruzzi, M. Gobbin, T.P. Goodman, A.N. Karpushov, M. Kong, A. MerleNuclear Fusion2019被引用: 6
低精度概要文一致
Development of helium electron cyclotron wall conditioning on TCV
D. Douai, T. Goodman, A. Isayama, M. Fukumoto, T. Wauters, C. Sozzi, S. Coda, P. Blanchard, L. Figini, S. GaravagliaNuclear Fusion2018被引用: 17
低精度概要文一致
Recent progress in the quantitative validation of JOREK simulations of ELMs in JET
S.J.P. Pamela, G.T.A. Huijsmans, T. Eich, S. Saarelma, I. Lupelli, C.F. Maggi, C. Giroud, I.T. Chapman, S.F. Smith, L. FrassinettiNuclear Fusion2017被引用: 28
低精度概要文一致
Innovation on high-power long-pulse gyrotrons
Alexander Litvak, Keishi Sakamoto, Manfred ThummPlasma Physics and Controlled Fusion2011
低精度概要文一致
Achievement of 500 keV negative ion beam acceleration on JT-60U negative-ion-based neutral beam injector
A. Kojima, M. Hanada, Y. Tanaka, M. Kawai, N. Akino, M. Kazawa, M. Komata, K. Mogaki, K. Usui, S. SasakiNuclear Fusion2011被引用: 52
低精度概要文一致
Development and achievements on the high power ECRF system in JT-60U
S. Moriyama, T. Kobayashi, A. Isayama, M. Terakado, M. Sawahata, S. Suzuki, K. Yokokura, M. Shimono, K. Hasegawa, S. HiranaiNuclear Fusion2009被引用: 25
低精度概要文一致
Special issue on Electron Cyclotron Wave physics and technology
F. C. SchüllerNuclear Fusion2003被引用: 1
低精度概要文一致
Beamline performance of 500 keV negative ion-based NBI system for JT-60U
T. Itoh, N. Akino, T. Aoyagi, N. Ebisawa, M. YamamotoFusion Engineering and Design1998
低精度概要文一致
Simple model to explain the temperature dependence of the lower hybrid current drive efficiency
K UshigusaPlasma Physics and Controlled Fusion1996
低精度概要文一致
Stress analysis method of U-shaped bellows and its experimental verification
H. Takatsu, M. Yamamoto, M. Shimizu, M. OhtaFusion Engineering and Design1993
低精度概要文一致
Transition to the H-mode by energetic electrons
K. Itoh, S.-I. ItohNuclear Fusion1992被引用: 19
低精度概要文一致
Diagnostic of the current density profile in the vicinity of q = 1: The Hα emission of ablated pellets
B. Pégourié, M.A. DuboisNuclear Fusion1990被引用: 13
低精度概要文一致
Mechanical behavior of graphite first wall during disruptions
J. Ohmori, T. Kobayashi, M. Yamada, H. Iida, T. HorieFusion Engineering and Design1989
低精度概要文一致
Burnout experiments on the externally-finned swirl tube for steady-state and high-heat flux beam stops
Masanori Araki, Masayuki Dairaku, Takashi Inoue, Masao Komata, Kenji YokoyamaFusion Engineering and Design1989
低精度概要文一致
Ignition and reactor application of deuterium based fuel cycles in field reversed configurations
K. HiranoNuclear Fusion1989被引用: 3
低精度概要文一致
Scaling of extended-tail temperature for combined NBI and ICRF heating
M Yamagiwa, T Takizuka, H Kimura, M AzumiPlasma Physics and Controlled Fusion1988
低精度概要文一致
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