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首页> 外文期刊>New journal of physics >Energetic particle-driven compressional Alfvén eigenmodes and prospects for ion cyclotron emission studies in fusion plasmas*
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Energetic particle-driven compressional Alfvén eigenmodes and prospects for ion cyclotron emission studies in fusion plasmas*

机译:高能粒子驱动的压缩Alfvén本征模式和聚变等离子体中离子回旋加速器发射研究的前景*

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摘要

As a fundamental plasma oscillation the compressional Alfvén waves (CAWs) are interesting for plasma scientists both academically and in applications for fusion plasmas. They are believed to be responsible for the ion cyclotron emission (ICE) observed in many tokamaks. The theory of CAW and ICE was significantly advanced at the end of 20th century in particular motivated by first DT experiments on TFTR and subsequent JET DT experimental studies. More recently, ICE theory was advanced by ST (or spherical torus) experiments with the detailed theoretical and experimental studies of the properties of each instability signal. There the instability responsible for ICE signals previously indistinguishable in high aspect ratio tokamaks became the subjects of experimental studies. We discuss further the prospects of ICE theory and its applications for future burning plasma experiments such as the ITER tokamak-reactor prototype being build in France where neutrons and gamma rays escaping the plasma create extremely challenging conditions for fusion alpha particle diagnostics.
机译:作为基本的等离子体振荡,压缩的Alfvén波(CAW)在学术上和在聚变等离子体的应用中都对等离子体科学家感兴趣。据信,它们是导致在许多托卡马克中观察到的离子回旋辐射(ICE)的原因。在20世纪末,CAW和ICE的理论得到了极大的发展,特别是受TFTR上的首次DT实验和随后的JET DT实验研究的推动。最近,通过ST(或球形圆环)实验对ICE理论进行了改进,并对每个不稳定信号的特性进行了详细的理论和实验研究。原来在高纵横比托卡马克中无法区分的ICE信号的不稳定性成为了实验研究的主题。我们将进一步讨论ICE理论的前景及其在未来燃烧等离子体实验中的应用,例如在法国建造的ITER托卡马克反应器原型,那里逃离等离子体的中子和伽马射线为融合α粒子诊断创造了极具挑战性的条件。

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