论文标题

离子温度对太阳风中α-普罗顿差分流量和加热机制的依赖性

Dependence of ion temperatures on alpha-proton differential flow vector and heating mechanisms in the solar wind

论文作者

Zhao, G. Q., Feng, H. Q., Wu, D. J., Huang, J., Zhao, Y., Liu, Q., Tian, Z. J.

论文摘要

According to \emph{Wind} observations between June 2004 and May 2019, this Letter investigates the proton and alpha particle temperatures in the space of ($θ_d$, $V_d/V_A$) for the first time, where $θ_d$ and $V_d$ are the radial angle and magnitude of alpha$-$proton differential flow vector respectively, $V_A$ is the local Alfvén speed.结果表明,温度显着取决于$θ_d$以及$ v_d/v_a $。如果低质子并行β($β_{p {\ parallel}} <1 $),发现当$θ_d$很小时,质子垂直温度明显增强($ \ lyssim 45^\ circ $)和$ v_d/v_d/v_d/v_a \ gtrsim 0.5 $。相反,当$θ_d$很大($ \ gtrsim 90^\ circ $)或$ v_d/v_a $时,alpha颗粒的垂直温度会大大增强。质子平行温度的最高发生在$θ_d\ sim 90^\ circ $伴随着较高的$β_{p {\ parallel}} $,并且在惯性范围内的磁性波动的较大湍流振幅。这项研究应为太阳风中质子和α颗粒的回旋共振加热提供有力的证据。还提出了包括Landau共振和随机加热在内的其他机制,这些机制往往具有不同的($θ_d$,$ v_d/v_a $)的空间不同。

According to \emph{Wind} observations between June 2004 and May 2019, this Letter investigates the proton and alpha particle temperatures in the space of ($θ_d$, $V_d/V_A$) for the first time, where $θ_d$ and $V_d$ are the radial angle and magnitude of alpha$-$proton differential flow vector respectively, $V_A$ is the local Alfvén speed. Results show that the temperatures significantly depend on $θ_d$ as well as $V_d/V_A$. In case of low proton parallel beta ($β_{p{\parallel}} < 1$), it is found that the proton perpendicular temperature is clearly enhanced when $θ_d$ is small ($\lesssim 45^\circ$) and $V_d/V_A \gtrsim 0.5$. On the contrary, the perpendicular temperature of alpha particles is considerably enhanced when $θ_d$ is large ($\gtrsim 90^\circ$) or $V_d/V_A$ is sufficiently small. The maximum of proton parallel temperature takes place at $θ_d \sim 90^\circ$ accompanied by higher $β_{p{\parallel}}$ and by larger turbulence amplitude of magnetic fluctuations in inertial range. This study should present strong evidence for cyclotron resonance heating of protons and alpha particles in the solar wind. Other mechanisms including Landau resonance and stochastic heating are also proposed, which tend to have different ($θ_d$, $V_d/V_A$) spaces than cyclotron resonance heating.

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