论文标题

IBEX的星际中性氦观测的完整太阳周期揭示了非常局部的星际介质

Very Local Interstellar Medium Revealed by Complete Solar Cycle of Interstellar Neutral Helium Observations with IBEX

论文作者

Swaczyna, P., Kubiak, M. A., Bzowski, M., Bower, J., Fuselier, S. A., Galli, A., Heirtzler, D., McComas, D. J., Möbius, E., Rahmanifard, F., Schwadron, N. A.

论文摘要

IBEX-LO仪器在星际边界探索者(IBEX)任务样品中,星际中性(ISN)氦原子从非常局部的星际培养基(VLISM)穿透了地球层。在这项研究中,我们使用全面的不确定性分析(包括统计和系统来源)分析了涵盖完整太阳周期的IBEX-LO ISN氦观测值。 $χ^2 $分析表明,ISN氦气从闪际$(λ,β)=(255.59^{\ circ} \ pm0.23^{\ circ},5.14^{\ circ} {\ circ} \ circ} \ pm0.08^pm circ} $ v _ $ v _ $ v _ $ v _2 = 225 s $^{ - 1} $和温度$ t_ \ text {hp} = 7450 \ pm140 $ k在Heliopause处。考虑到引力吸引力和弹性碰撞,原始vlism中的ISN氦气速度和温度远离HeliOpause是$ v_ \ text {vlism} = 25.9 $ km s $ s $^{ - 1} $和$ t_ \ t_ \ t_ \ text {vlism} = 6150 $ k,分别。在12年内,ISN氦气磁通量在1 AU处的时间演变表明,IBEX-LO检测效率发生了显着变化,在模型中假设中的ISN氦原子的电离速率更高,或者在分析观测值中的其他未偏见的信号源。然而,在分析的时期内,我们没有发现任何ISN氦气参数的演变的迹象。最后,我们认为,IBEX-LO与星际映射和加速探针(IMAP)重叠的继续操作将在跟踪VLISM中可能的物理变化方面至关重要。

The IBEX-Lo instrument on board the Interstellar Boundary Explorer (IBEX) mission samples interstellar neutral (ISN) helium atoms penetrating the heliosphere from the very local interstellar medium (VLISM). In this study, we analyze the IBEX-Lo ISN helium observations covering a complete solar cycle, from 2009 through 2020 using a comprehensive uncertainty analysis including statistical and systematic sources.W e employ the Warsaw Test Particle Model to simulate ISN helium fluxes at IBEX, which are subsequently compared with the observed count rate in the three lowest energy steps of IBEX-Lo. The $χ^2$ analysis shows that the ISN helium flows from ecliptic $(λ,β)=(255.59^{\circ}\pm0.23^{\circ}, 5.14^{\circ}\pm0.08^{\circ})$, with speed $v_\text{HP}=25.86\pm0.21$ km s$^{-1}$ and temperature $T_\text{HP}=7450\pm140$ K at the heliopause. Accounting for gravitational attraction and elastic collisions, the ISN helium speed and temperature in the pristine VLISM far from the heliopause are $v_\text{VLISM}=25.9$ km s$^{-1}$ and $T_\text{VLISM}=6150$ K, respectively. The time evolution of the ISN helium fluxes at 1 au over 12 years suggests significant changes in the IBEX-Lo detection efficiency, higher ionization rates of ISN helium atoms in the heliosphere than assumed in the model, or an additional unaccounted signal source in the analyzed observations. Nevertheless, we do not find any indication of the evolution of the derived parameters of ISN helium over the period analyzed. Finally, we argue that the continued operation of IBEX-Lo to overlap with the Interstellar Mapping and Acceleration Probe (IMAP) will be pivotal in tracking possible physical changes in the VLISM.

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