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SELF-CONSISTENT ION CYCLOTRON ANISOTROPY-BETA RELATION FOR SOLAR WIND PROTONS

机译:太阳风质子的自洽离子回旋各向异性-BET关系

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We derive a set of self-consistent marginally stable states for a system of ion-cyclotron waves propagating parallel to the large-scale magnetic field through a homogeneous proton-electron plasma. The proton distributions and the wave dispersions are related through the condition that no further ion-cyclotron resonant particle scattering or wave growth/damping may take place. The thermal anisotropy of the protons in these states therefore defines the threshold value for triggering the proton-cyclotron anisotropy instability. A number of recent papers have noted that the anisotropy of solar wind protons at 1 AU does not seem to be limited by the proton-cyclotron anisotropy threshold, even at low plasma beta. However, this puzzle seems to be due solely to the estimation of this anisotropy threshold under the assumption that the protons have a bi-Maxwellian distribution. We note that bi-Maxwellian distributions are never marginally stable to the resonant cyclotron interaction, so these estimates do not represent physically valid thresholds. The threshold anisotropies obtained from our marginally stable states are much larger, as a function of proton parallel beta, than the bi-Maxwellian estimates, and we show that the measured data remains below these more rigorous thresholds. Thus, the results of this paper resolve the apparent contradiction presented by the solar wind anisotropy observations at 1 AU: the bi-Maxwellian anisotropies are not rigorous thresholds, and so do not limit the proton distributions in the solar wind.
机译:我们为通过均匀质子电子等离子体平行于大规模磁场传播的离子回旋波系统导出了一组自洽的边缘稳定状态。质子的分布和波的分散是通过没有其他离子回旋加速器共振粒子的散射或波的生长/衰减的条件来进行的。因此,在这些状态下质子的热各向异性定义了用于触发质子-回旋加速器各向异性不稳定性的阈值。许多最新的论文指出,即使在低血浆β值下,太阳风质子在1 AU下的各向异性似乎也不受质子-回旋加速器各向异性阈值的限制。然而,这个难题似乎完全是由于在质子具有双麦克斯韦分布的假设下对各向异性阈值的估计。我们注意到,双麦克斯韦分布不会对共振回旋加速器相互作用产生边际稳定,因此这些估计值并不代表物理上有效的阈值。作为质子平行β的函数,从我们的边缘稳定状态获得的阈值各向异性比bi-Maxwellian估计要大得多,并且我们表明,测得的数据仍低于这些更严格的阈值。因此,本文的结果解决了1 AU处太阳风各向异性观测所呈现的明显矛盾:双麦克斯韦各向异性不是严格的阈值,因此也不会限制太阳风中质子的分布。

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