Current drive at plasma densities required for thermonuclear reactors

被引:0
|
作者
R. Cesario
L. Amicucci
A. Cardinali
C. Castaldo
M. Marinucci
L. Panaccione
F. Santini
O. Tudisco
M.L. Apicella
G. Calabrò
C. Cianfarani
D. Frigione
A. Galli
G. Mazzitelli
C. Mazzotta
V. Pericoli
G. Schettini
A.A. Tuccillo
机构
[1] Associazione EURATOM/ENEA sulla Fusione,Dipartimento Ingegneria Elettronica
[2] Centro Ricerche Frascati,undefined
[3] Università di Roma Sapienza,undefined
[4] Via Eudossiana 18,undefined
[5] Rome 00184,undefined
[6] Italy.,undefined
[7] Università Roma Tre,undefined
[8] Facoltà di Ingegneria Dip. Elettronica Applicata,undefined
[9] Via della Vasca Navale 84,undefined
[10] Rome 00146,undefined
[11] Italy.,undefined
[12] Istituto di Fisica del Plasma,undefined
[13] EURATOM-ENEA-CNR Association,undefined
[14] Via R. Cozzi 53,undefined
来源
Nature Communications | / 1卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Progress in thermonuclear fusion energy research based on deuterium plasmas magnetically confined in toroidal tokamak devices requires the development of efficient current drive methods. Previous experiments have shown that plasma current can be driven effectively by externally launched radio frequency power coupled to lower hybrid plasma waves. However, at the high plasma densities required for fusion power plants, the coupled radio frequency power does not penetrate into the plasma core, possibly because of strong wave interactions with the plasma edge. Here we show experiments performed on FTU (Frascati Tokamak Upgrade) based on theoretical predictions that nonlinear interactions diminish when the peripheral plasma electron temperature is high, allowing significant wave penetration at high density. The results show that the coupled radio frequency power can penetrate into high-density plasmas due to weaker plasma edge effects, thus extending the effective range of lower hybrid current drive towards the domain relevant for fusion reactors.
引用
收藏
相关论文
共 50 条
  • [1] Current drive at plasma densities required for thermonuclear reactors
    Cesario, R.
    Amicucci, L.
    Cardinali, A.
    Castaldo, C.
    Marinucci, M.
    Panaccione, L.
    Santini, F.
    Tudisco, O.
    Apicella, M. L.
    Calabro, G.
    Cianfarani, C.
    Frigione, D.
    Galli, A.
    Mazzitelli, G.
    Mazzotta, C.
    Pericoli, V.
    Schettini, G.
    Tuccillo, A. A.
    Angelini, B.
    Apruzzese, G.
    Barbato, E.
    Belli, G.
    Bin, W.
    Boncagni, L.
    Botrugno, A.
    Briguglio, S.
    Bruschi, A.
    Ceccuzzi, S.
    Centioli, C.
    Cirant, S.
    Crisanti, F.
    D'Arcangelo, O.
    De Angelis, R.
    Di Matteo, L.
    Di Troia, C.
    Esposito, B.
    Fogaccia, G.
    Fusco, V.
    Gabellieri, L.
    Garavaglia, A.
    Giovannozzi, E.
    Granucci, G.
    Grossetti, G.
    Grosso, G.
    Iannone, F.
    Maddaluno, G.
    Marocco, D.
    Micozzi, P.
    Milovanov, A.
    Mirizzi, F.
    NATURE COMMUNICATIONS, 2010, 1
  • [2] Lower hybrid current drive at plasma densities required for thermonuclear reactors
    Cesario, R.
    Amicucci, L.
    Cardinali, A.
    Castaldo, C.
    Tuccillo, A. A.
    RADIO FREQUENCY POWER IN PLASMAS: PROCEEDINGS OF THE 19TH TOPICAL CONFERENCE, 2011, 1406
  • [3] Correction: Corrigendum: Current drive at plasma densities required for thermonuclear reactors
    R. Cesario
    L. Amicucci
    A. Cardinali
    C. Castaldo
    M. Marinucci
    L. Panaccione
    F. Santini
    O. Tudisco
    M.L. Apicella
    G. Calabrò
    C. Cianfarani
    D. Frigione
    A. Galli
    G. Mazzitelli
    C. Mazzotta
    V. Pericoli
    G. Schettini
    A.A. Tuccillo
    Nature Communications, 4
  • [4] Parametric instability and lower hybrid current drive at plasma densities required for thermonuclear reactors
    Cesario, R.
    Amicucci, L.
    De Arcangelis, D.
    Ferrari, M.
    Napoli, F.
    Pullara, E.
    THEORY OF FUSION PLASMAS: JOINT VARENNA-LAUSANNE INTERNATIONAL WORKSHOP, 2010, 260
  • [5] Current drive at plasma densities required for thermonuclear reactors (vol 1, pg 55, 2010)
    Cesario, R.
    Amicucci, L.
    Cardinali, A.
    Castaldo, C.
    Marinucci, M.
    Panaccione, L.
    Santini, F.
    Tudisco, O.
    Apicella, M. L.
    Calabro, G.
    Cianfarani, C.
    Frigione, D.
    Galli, A.
    Mazzitelli, G.
    Mazzotta, C.
    Pericoli, V.
    Schettini, G.
    Tuccillo, A. A.
    NATURE COMMUNICATIONS, 2013, 4
  • [6] Radio-frequency current drive for thermonuclear fusion reactors
    Cardinali, A.
    Castaldo, C.
    Cesario, R.
    Amicucci, L.
    Galli, A.
    Napoli, F.
    Panaccione, L.
    Riccardi, C.
    Santini, F.
    Schettini, G.
    Tuccillo, A. A.
    SCIENTIFIC REPORTS, 2018, 8
  • [7] Current drive for stability of thermonuclear plasma reactor
    Amicucci, L.
    Cardinali, A.
    Castaldo, C.
    Cesario, R.
    Galli, A.
    Panaccione, L.
    Paoletti, F.
    Schettini, G.
    Spigler, R.
    Tuccillo, A.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2016, 58 (01)
  • [8] Radio-frequency current drive for thermonuclear fusion reactors
    A. Cardinali
    C. Castaldo
    R. Cesario
    L. Amicucci
    A. Galli
    F. Napoli
    L. Panaccione
    C. Riccardi
    F. Santini
    G. Schettini
    A. A. Tuccillo
    Scientific Reports, 8
  • [9] Polarimetric Optical Fibre Sensing for Plasma Current Measurement in Thermonuclear Fusion Reactors
    Wuilpart, Marc
    Gusarov, Andrei
    Leysen, Willem
    Batistoni, Paola
    Moreau, Philippe
    Dandu, Prasadaraju
    Megret, Patrice
    2020 22ND INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS (ICTON 2020), 2020,