论文标题
向外传播离子尺度波的电磁特征
The Electromagnetic Signature of Outward Propagating Ion-Scale Waves
论文作者
论文摘要
Parker太阳探针(PSP)任务的首先结果表明,内层内无处不在的离子尺度波,它们是动力学波粒相互作用和流体尺度不稳定性的特征。然而,对PSP观察到的循环极化离子尺度波的初步研究仅对磁场特征进行了彻底分析,从而排除了太阳风框架传播方向和内在波动极化的测定。对波构的全面确定需要测量电场和磁场。在这里,我们使用PSP/Fields仪器套件的完整功能来测量圆形极波的电和磁成分。将航天器框架磁场测量与平行横向波的多普勒移位冷时色散关系进行比较,限制了可允许的等离子体框架偏振和波形向量。我们证明,多普勒偏移的冷皮亚色散具有最大航天器频率$ f_ {sc}^{*} $,对于本质上右手右手的快速磁波(FMWS)传播日光显示的$左手可能左手出现在太空人框架中。用$ | f |> f_ {sc}^{*} $观察的左撇子波是由本质上左手的离子 - 循环,wave(icws)唯一解释的。我们证明,具有$ | f |> f_ {sc}^{*} $的波的电场测量值与ICWS从太阳传播,验证测得的电场一致。将经过验证的电场测量应用于波的完整分布表明,在太阳风框中,绝大多数波远离太阳,这表明观察到的相干离子尺度波群既包含固有的左侧和右手极化模式。
First results from the Parker Solar Probe (PSP) mission have revealed ubiquitous coherent ion-scale waves in the inner heliosphere, which are signatures of kinetic wave-particle interactions and fluid-scale instabilities. However, initial studies of the circularly polarized ion-scale waves observed by PSP have only thoroughly analyzed magnetic field signatures, precluding a determination of solar-wind frame propagation direction and intrinsic wave-polarization. A comprehensive determination of wave-properties requires measurements of both electric and magnetic fields. Here, we use full capabilities of the PSP/FIELDS instrument suite to measure both the electric and magnetic components of circularly polarized waves. Comparing spacecraft frame magnetic field measurements with the Doppler-shifted cold-plasma dispersion relation for parallel transverse waves constrains allowable plasma frame polarizations and wave-vectors. We demonstrate that the Doppler-shifted cold-plasma dispersion has a maximum spacecraft frequency $f_{sc}^{*}$ for which intrinsically right-handed fast-magnetosonic waves (FMWs) propagating sunwards can appear left-handed in the spacecraft frame. Observations of left-handed waves with $|f|>f_{sc}^{*}$ are uniquely explained by intrinsically left-handed, ion-cyclotron, waves (ICWs). We demonstrate that electric field measurements for waves with $|f|>f_{sc}^{*}$ are consistent with ICWs propagating away from the sun, verifying the measured electric field. Applying the verified electric field measurements to the full distribution of waves suggests that, in the solar wind frame, the vast majority of waves propagate away from the sun, indicating that the observed population of coherent ion-scale waves contains both intrinsically left and right hand polarized modes.