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Acceleration Of Suprathermal Tails In The Solar Wind

机译:太阳风中超热尾的加速

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Suprathermal particles are ubiquitously present in the solar wind, with energies typically from ~ 1 keV nucleon~(-1) to ~a few MeV nucleon~(-1). Remarkably, the suprathermal particles exhibit a common spectral shape in many different circumstances; the distribution function is a power law in particle speed, with spectral index of -5. The observations cannot be explained by traditional stochastic acceleration, which yields spectra that depend on, e.g., the momentum diffusion coefficient, and thus the spectra are expected to be different in different circumstances. A theory is presented in which the particles are accelerated in thermally isolated compression al turbulence. Thermal isolation is valid in spatially homogeneous conditions in the solar wind, and when properly applied, yields suprathermal tails that always have the required spectral shape. The theory describes the time evolution of the spectrum to its equilibrium form and predicts the high-speed cutoff on the acceleration. The high-speed cutoff is shown to be in good agreement with observations of quiet-time spectra at Earth and is consistent with observations throughout the outer heliosphere.
机译:超热粒子普遍存在于太阳风中,能量通常在〜1 keV核子〜(-1)到〜几个MeV核子〜(-1)。值得注意的是,超热粒子在许多不同的情况下都表现出共同的光谱形状。分布函数是粒子速度的幂律,光谱指数为-5。这些观察不能用传统的随机加速度来解释,传统的随机加速度产生的光谱取决于例如动量扩散系数,因此,在不同的情况下,期望光谱是不同的。提出了一种理论,其中颗粒在热隔离的压缩湍流中被加速。热隔离在太阳风中的空间均质条件下有效,并且在正确应用后,会产生始终具有所需光谱形状的超热尾部。该理论将频谱的时间演化描述为平衡形式,并预测加速度的高速截止。高速截止被证明与地球静时光谱的观测非常吻合,并且与整个外太阳圈的观测一致。

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