Centre de Recherches en Physiques des Plasmas, Ecole Polytechnique Fédérale de Lausanne (CRPP-EPFL), Lausanne, Switzerland.
Phys Rev Lett. 2011 Jun 17;106(24):245002. doi: 10.1103/PhysRevLett.106.245002. Epub 2011 Jun 13.
In the standard scenario of tokamak plasma operation, sawtooth crashes are the main perturbations that can trigger performance-degrading, and potentially disruption-generating, neoclassical tearing modes. This Letter demonstrates sawtooth pacing by real-time control of the auxiliary power. It is shown that the sawtooth crash takes place in a reproducible manner shortly after the removal of that power, and this can be used to precisely prescribe, i.e., pace, the individual sawteeth. In combination with preemptive stabilization of the neoclassical tearing modes, sawtooth pacing provides a new sawtooth control paradigm for improved performance in burning plasmas.
在托卡马克等离子体运行的标准场景中,锯齿崩溃是主要的扰动,可能会引发性能下降,并潜在地引发破坏的新经典撕裂模。本信展示了通过辅助功率的实时控制进行锯齿步控。结果表明,在该功率移除后不久,锯齿崩溃以可重复的方式发生,这可用于精确规定,即步控,各个锯齿。与新经典撕裂模的预先稳定相结合,锯齿步控为提高燃烧等离子体的性能提供了一种新的锯齿控制范例。