尚未解决的太阳风湍流问题

Charles W. Smith, B. Vasquez
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摘要

太阳风是地球上最大的等离子体和磁流体湍流风洞。它是由一个被认为是湍流源的东西演变而来的,当它通过大尺度、含能量的风切变和冲击向外扩展时,湍流源会继续驱动非线性湍流动力学。在外层日光层,一旦气流中的梯度凝聚起来,不再为湍流提供足够的能量来源,星际拾取离子的注入激发的波能就会成为继续驱动湍流的主要能量来源。虽然已经有了确定湍流强度和湍流谱演化的既定公式,但导致湍流形成和演化的实际非线性动力学仍未得到解决,也是相当多争论的主题。我们对证据进行了研究,并试图阐明各种理论,同时展示解决争论所需的条件,并将等离子体湍流这一主题带入一个新的理解层面。
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The unsolved problem of solar-wind turbulence
The solar wind forms the largest wind tunnel for plasma and magnetofluid turbulence that is accessible to Earth. It evolves from what is thought to be a turbulent source that continues to drive nonlinear turbulent dynamics as it expands outward via large-scale, energy-containing wind shear and shocks. In the outer heliosphere, once the gradients in the flow have coalesced and they no longer provide an adequate source for the turbulence, the excitation of wave energy by the injection of interstellar pickup ions becomes the dominant source of energy that continues to drive the turbulence. While there are established formalisms for the determination of the strength of the turbulence and the evolution of the turbulent spectra is well-established, the actual nonlinear dynamics that are responsible for its formation and evolution remain unresolved and the subject of considerable debate. We examine the evidence and attempt to illuminate the various theories while demonstrating what is needed to resolve the debates and bring the subject of plasma turbulence into a new level of understanding.
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