论文标题

在PSP遇到的慢性太阳风中质子尺度磁光谱断裂的径向依赖性2

The Radial Dependence of Proton-scale Magnetic Spectral Break in Slow Solar Wind during PSP Encounter 2

论文作者

Duan, Die, Bowen, Trevor A., Chen, Christopher H. K., Mallet, Alfred, He, Jiansen, Bale, Stuart D., Vech, Daniel, Kasper, J. C., Pulupa, Marc, Bonnell, John W., Case, Anthony W., de Wit, Thierry Dudok, Goetz, Keith, Harvey, Peter R., Korreck, Kelly E., Larson, Davin, Livi, Roberto, MacDowall, Robert J., Malaspina, David M., Stevens, Michael, Whittlesey, Phyllis

论文摘要

通常观察到太阳风中的磁场波动遵循功率法谱。近乎质子的运动尺度,发生光谱中断,通常被解释为向动力学湍流的过渡。但是,这种过渡尚未完全理解。通过研究具有各种血浆特性的断裂缩放,可以约束导致动力湍流发作的过程。使用Parker太阳能探针(\ TextIt {PSP})的数据,我们测量了质子量表在一系列中心距离上的破裂,从而可以测量各种血浆条件下从惯性到动力学尺度湍流的过渡。我们发现,随着HeliePentric距离$ r $的慢性$ r $在电源法$ f_b \ sim r^{ - 1.11} $下降时,断裂频率$ f_b $增加。我们还将其与特征性等离子体离子量表进行比较,以将断裂与在此量表下发生的物理机制相关联。 $ f_b $和$ f_c $的比率,多普勒移动的离子回旋共振量表对于所有等离子体$β_p$来说都是统一的。在高$β_p$的情况下,多普勒移动陀螺仪的$ f_b $和$f_ρ$之间的比率大约是统一的。虽然在低$β_p$的情况下,$ f_b $和$ f_d $之间的比率,多普勒移动质子惯性长度是统一的。由于较大的可比Alfvén和太阳风速,我们使用标准和修改的泰勒假设分析了这些结果,证明了稳健的统计结果。

Magnetic field fluctuations in the solar wind are commonly observed to follow a power law spectrum. Near proton-kinetic scales, a spectral break occurs which is commonly interpreted as a transition to kinetic turbulence. However, this transition is not yet entirely understood. By studying the scaling of the break with various plasma properties, it may be possible to constrain the processes leading to the onset of kinetic turbulence. Using data from Parker Solar Probe (\textit{PSP}), we measure the proton scale break over a range of heliocentric distances, enabling a measurement of the transition from inertial to kinetic scale turbulence under various plasma conditions. We find that the break frequency $f_b$ increases as the heliocentric distance $r$ decreases in the slow solar wind following a power law $f_b\sim r^{-1.11}$. We also compare this to the characteristic plasma ion scales to relate the break to the possible physical mechanisms occurring at this scale. The ratio between $f_b$ and $f_c$, the Doppler shifted ion cyclotron resonance scale, is approximately unity for all plasma $β_p$. At high $β_p$ the ratio between $f_b$ and $f_ρ$, the Doppler shifted gyroscale, is approximately unity; while at low $β_p$ the ratio between $f_b$ and $f_d$, the Doppler shifted proton-inertial length is unity. Due to the large comparable Alfvén and solar wind speeds, we analyze these results using both the standard and modified Taylor hypothesis, demonstrating robust statistical results.

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