论文标题
帕克太阳能探测器和类似彗星的物体在其毛刺期间的遇到:模型预测和测量
Encounter of Parker Solar Probe and a Comet-like Object During Their Perihelia: Model Predictions and Measurements
论文作者
论文摘要
帕克太阳能探测器(PSP)旨在探索靠近太阳的新生太阳风。同时,还期望PSP遇到彗星和小行星等小物体。在这项工作中,我们调查了新世纪以找到最近相遇的机会,然后对释放的尘土飞扬等离子体和太阳风等离子体的相互作用进行建模。 2019年9月2日,一个类似彗星的物体322p/soho刚刚将其围栏飞行到达中心为0.12 au,并在相对距离处通过PSP扫描,接近0.025 au。我们介绍了从322p释放的灰尘颗粒的动力学,形成了弯曲的灰尘尾巴。沿着模拟内部的Heliosphere中的PSP路径,对血浆和磁场状态的状态进行了采样和说明,并将来自模拟结果的磁场序列直接与PSP的原位测量进行了比较。通过比较,我们建议322p可能处于不足的活动水平,在成为“岩石彗星”的过程中释放有限的尘土气概。我们还介绍了WISPR记录的太阳风彩流器的图像,显示了尘埃轰炸的指示,以弥漫着凌乱的小径。我们从Lasco Coronagraph观察到,322p在其近日段通道中从昏暗区域转变为相对明亮的彩带,并模拟以确认322p从相对更快地飞向较慢的太阳风流,从而修改了流的局部血浆状态。
Parker Solar Probe (PSP) aims at exploring the nascent solar wind close to the Sun. Meanwhile, PSP is also expected to encounter small objects like comets and asteroids. In this work, we survey the ephemerides to find a chance of recent encounter, and then model the interaction between released dusty plasmas and solar wind plasmas. On 2019 September 2, a comet-like object 322P/SOHO just passed its perihelion flying to a heliocentric distance of 0.12 au, and swept by PSP at a relative distance as close as 0.025 au. We present the dynamics of dust particles released from 322P, forming a curved dust tail. Along the PSP path in the simulated inner heliosphere, the states of plasma and magnetic field are sampled and illustrated, with the magnetic field sequences from simulation results being compared directly with the in-situ measurements from PSP. Through comparison, we suggest that 322P might be at a deficient activity level releasing limited dusty plasmas during its way to becoming a "rock comet". We also present images of solar wind streamers as recorded by WISPR, showing an indication of dust bombardment for the images superposed with messy trails. We observe from LASCO coronagraph that 322P was transiting from a dimming region to a relatively bright streamer during its perihelion passage, and simulate to confirm that 322P was flying from relatively faster to slower solar wind streams, modifying local plasma states of the streams.