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Generation and observation of fast deuterium ions and fusion-born alpha particles in JET ##IMG## [http://ej.iop.org/images/0029-5515/60/12/124006/toc_nfabb95dieqn1.gif] {$\mathrm{D-^3He}$} plasmas with the 3-ion radio-frequency heating scenario
Nuclear Fusion ( IF 3.5 ) Pub Date : 2020-10-30 , DOI: 10.1088/1741-4326/abb95d
M. Nocente 1, 2 , Ye.O. Kazakov 3 , J. Garcia 4 , V.G. Kiptily 5 , J. Ongena 3 , M. Dreval 6 , M. Fitzgerald 5 , S.E. Sharapov 5 , Z. Stancar 7 , H. Weisen 8 , Y. Baranov 5 , A. Bierwage 9 , T. Craciunescu 10 , A. Dal Molin 1 , E. de la Luna 11 , R. Dumont 4 , P. Dumortier 3 , J. Eriksson 12 , L. Giacomelli 2 , C. Giroud 5 , V. Goloborodko 13 , G. Gorini 1, 2 , E. Khilkevitch 14 , K.K. Kirov 5 , M. Iliasova 14 , P. Jacquet 3 , P. Lauber 15 , E. Lerche 3 , M.J. Mantsinen 16 , A. Mariani 2 , S. Mazzi 4, 17 , F. Nabais 18 , M.F.F. Nave 18 , J. Oliver 5 , E. Panontin 1 , D. Rigamonti 2 , A. Sahlberg 12 , M. Salewski 19 , A. Shevelev 14 , K. Shinohara 20 , P. Siren 21 , S. Sumida 22 , M. Tardocchi 2 , D. Van Eester 3 , J. Varje 21 , A. Zohar 7 , JET Contributors
Affiliation  

Dedicated experiments to generate energetic D ions and ##IMG## [http://ej.iop.org/images/0029-5515/60/12/124006/nfabb95dieqn2.gif] {$\mathrm{D-^3He}\ $} fusion-born alpha particles were performed at the Joint European Torus (JET) with the ITER-like wall (ILW). Using the 3-ion ##IMG## [http://ej.iop.org/images/0029-5515/60/12/124006/nfabb95dieqn3.gif] {$\mathrm{D-(D_{NBI})-^3He}$} radio frequency (RF) heating scenario, deuterium ions from neutral beam injection (NBI) were accelerated in the core of mixed ##IMG## [http://ej.iop.org/images/0029-5515/60/12/124006/nfabb95dieqn4.gif] {$\mathrm{D-^3He}\ $} plasmas to higher energies with ion cyclotron resonance frequency (ICRF) waves, in turn leading to a core-localized source of alpha particles. The fast-ion distribution of RF-accelerated D-NBI ions was controlled by varying the ICRF and NBI power ( ##IMG## [http://ej.io...] {$\mathrm{P_{ICRF}} \approx $}

中文翻译:

在JET ## IMG ##中快速生成氘离子和融合生成的α粒子并进行观察[http://ej.iop.org/images/0029-5515/60/12/124006/toc_nfabb95dieqn1.gif] {$ \具有3离子射频加热方案的mathrm {D- ^ 3He} $}等离子体

产生高能D离子和## IMG ##的专用实验[http://ej.iop.org/images/0029-5515/60/12/124006/nfabb95dieqn2.gif] {$ \ mathrm {D- ^ 3He}融合产生的Alpha粒子是在具有ITER样墙(ILW)的欧洲联合圆环(JET)上进行的。使用3离子## IMG ## [http://ej.iop.org/images/0029-5515/60/12/124006/nfabb95dieqn3.gif] {$ \ mathrm {D-(D_ {NBI}) -^ 3He} $}射频(RF)加热方案,在混合## IMG ##的核心中加速了来自中性束注入(NBI)的氘离子[http://ej.iop.org/images/0029- 5515/60/12/124006 / nfabb95dieqn4.gif] {$ \ mathrm {D- ^ 3He} \ $}等离子体通过离子回旋共振频率(ICRF)波转换为更高的能量,进而导致α的芯局部定位粒子。
更新日期:2020-10-30
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