论文标题

波粒能量转移直接在离子回旋波中观察到

Wave-particle energy transfer directly observed in an ion cyclotron wave

论文作者

Vech, Daniel, Martinovic, Mihailo M., Klein, Kristopher G., Malaspina, David M., Bowen, Trevor A., Verniero, Jenny L., Paulson, Kristoff, de Wit, Thierry Dudok, Kasper, Justin C., Huang, Jia, Stevens, Michael L., Case, Anthony W., Korreck, Kelly, Mozer, Forrest S., Goodrich, Katherine A., Bale, Stuart D., Whittlesey, Phyllis L., Livi, Roberto, Larson, Davin E., Pulupa, Marc, Bonnell, John, Harvey, Peter, Goetz, Keith, MacDowall, Robert

论文摘要

语境。对Parker太阳探针(PSP)数据的首次研究已取得了重大进展,以理解内部地球层中离子回旋体波的基本特性。但是,PSP的调查模式粒子测量并不能使电磁场和颗粒之间在波周期的时间尺度上测量电磁场和颗粒之间的耦合。 目标。我们提出了一种使用PSP研究波颗粒能交换的新方法。 方法。我们将太阳能探针杯的通量角度操作模式与电场测量结合使用,并在通量角度模式测量质子速度分布与离子回旋体波的直接相互作用时提出案例研究。 结果。我们的结果表明,在回旋期的时间尺度上,能量转移到颗粒的能量转移等于电磁能通量的大约3-6%。该速率与以下假设一致,即离子回旋体波是在太阳风中局部产生的。

Context. The first studies with Parker Solar Probe (PSP) data have made significant progress toward the understanding of the fundamental properties of ion cyclotron waves in the inner heliosphere. The survey mode particle measurements of PSP, however, did not make it possible to measure the coupling between electromagnetic fields and particles on the time scale of the wave periods. Aims. We present a novel approach to study wave-particle energy exchange with PSP. Methods. We use the Flux Angle operation mode of the Solar Probe Cup in conjunction with the electric field measurements and present a case study when the Flux Angle mode measured the direct interaction of the proton velocity distribution with an ion cyclotron wave. Results. Our results suggest that the energy transfer from fields to particles on the timescale of a cyclotron period is equal to approximately 3-6% of the electromagnetic energy flux. This rate is consistent with the hypothesis that the ion cyclotron wave was locally generated in the solar wind.

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