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欧姆加热H模式下托卡马克等离子体的自加速

Self-acceleration of a tokamak plasma during ohmic H mode.

作者信息

Hutchinson IH, Rice JE, Granetz RS, Snipes JA

机构信息

Plasma Science and Fusion Center, Massachusetts Institute of Technology, Cambridge, Massachusetts.

出版信息

Phys Rev Lett. 2000 Apr 10;84(15):3330-3. doi: 10.1103/PhysRevLett.84.3330.

Abstract

Core plasma rotation is observed to change from counter direction to co-current direction during the transition from low (L) to high (H) confinement mode, in Alcator C-Mod plasmas that are heated purely Ohmically and, hence, have no momentum input. The changes of the toroidal velocities, deduced independently from impurity Doppler measurements and from magnetic perturbations associated with sawteeth, agree. The magnitude of the change is consistent with the previously documented scaling for rotation in ion cyclotron rf-heated H modes. The rotation in this Ohmic experiment is obviously not an rf effect but demonstrates unequivocally a transport effect accelerating the plasma.

摘要

在Alcator C-Mod等离子体中,通过纯欧姆加热(因此没有动量输入)从低约束(L)模式转变为高约束(H)模式的过程中,观察到核心等离子体旋转从反向变为顺流方向。从杂质多普勒测量和与锯齿相关的磁扰动独立推导得出的环向速度变化是一致的。变化的幅度与先前记录的离子回旋共振射频加热H模式下的旋转标度一致。在这个欧姆实验中的旋转显然不是射频效应,而是明确证明了一种加速等离子体的输运效应。

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