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Exponential power spectra, deterministic chaos and Lorentzian pulses in plasma edge dynamics

机译:等离子体边缘动力学中的指数功率谱,确定性混沌和洛伦兹脉冲

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Exponential spectra have been observed in the edges of tokamaks, stellarators, helical devices and linear machines. The observation of exponential power spectra is significant because such a spectral character has been closely associated with the phenomenon of deterministic chaos by the nonlinear dynamics community. The proximate cause of exponential power spectra in both magnetized plasma edges and nonlinear dynamics models is the occurrence of Lorentzian pulses in the time signals of fluctuations. Lorentzian pulses are produced by chaotic behavior in the separatrix regions of plasma E × B flow fields or the limit cycle regions of nonlinear models. Chaotic advection, driven by the potential fields of drift waves in plasmas, results in transport. The observation of exponential power spectra and Lorentzian pulses suggests that fluctuations and transport at the edge of magnetized plasmas arise from deterministic, rather than stochastic, dynamics.
机译:在托卡马克,恒星器,螺旋装置和线性机器的边缘已经观察到指数光谱。指数功率谱的观察是有意义的,因为非线性动力学界已经将这种谱特性与确定性混沌现象紧密联系在一起。磁化等离子体边缘和非线性动力学模型中指数功率谱的直接起因是波动时间信号中出现了洛伦兹脉冲。洛伦兹脉冲是由等离子体E×B流场的分离线区域或非线性模型的极限循环区域中的混沌行为产生的。由等离子体中的漂移波的势场驱动的混沌对流导致输运。对指数功率谱和洛伦兹脉冲的观察表明,磁化等离子体边缘的波动和传输是确定性的,而不是随机的。

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