Laboratorio Nacional de Fusión, Asociación EURATOM-CIEMAT, 28040 Madrid, Spain.
Phys Rev Lett. 2012 Sep 7;109(10):105001. doi: 10.1103/PhysRevLett.109.105001.
Recently, it has been proposed that the turbulent fluctuations measured in a linear plasma device could be described as a superposition of uncorrelated Lorentzian pulses with a narrow distribution of durations, which would provide an explanation for the reported quasiexponential power spectra. Here, we study the applicability of this proposal to edge fluctuations in toroidal magnetic confinement fusion plasmas. For the purpose of this analysis, we introduce a novel wavelet-based pulse-detection technique that offers important advantages over existing techniques. This technique allows for extracting the properties of individual pulses from the experimental time series, and for quantifying the distribution of pulse duration and energy as well as temporal correlations. We apply the wavelet technique to edge turbulent fluctuation data from the W7-AS stellarator and the JET tokamak, and find that the pulses detected in the data do not have a narrow distribution of durations and are not uncorrelated. Instead, the distributions are of the power-law type, exhibiting temporal correlations over scales much longer than the typical pulse duration. These results suggest that turbulence in open and closed field line systems may be distinct, and cast doubts on the proposed ubiquity of exponential power spectra in this context.
最近有人提出,在线性等离子体装置中测量到的湍动涨落可以被描述为具有窄分布持续时间的不相关的洛伦兹脉冲的叠加,这将为所报道的准指数幂律功率谱提供解释。在这里,我们研究了这一建议在托卡马克磁约束聚变等离子体边缘涨落中的适用性。为此目的,我们引入了一种新的基于小波的脉冲检测技术,该技术相对于现有技术具有重要优势。该技术允许从实验时间序列中提取单个脉冲的特性,并量化脉冲持续时间和能量的分布以及时间相关性。我们将小波技术应用于 W7-AS 仿星器和 JET 托卡马克的边缘湍动涨落数据,并发现数据中检测到的脉冲没有窄的持续时间分布,也没有相关性。相反,分布是幂律类型的,在比典型脉冲持续时间长得多的尺度上表现出时间相关性。这些结果表明,开和闭磁力线系统中的湍流可能是不同的,并对这一背景下普遍存在指数幂律功率谱的假设提出了质疑。