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Interstellar Neutral Helium in the Heliosphere from IBEX Observations. V. Observations in IBEX-Lo ESA Steps 1, 2, and 3

机译:来自IBEX观测的日球中的星际中性氦。 V.IBEX-Lo ESA步骤1、2和3中的观察

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Direct-sampling observations of interstellar neutral (ISN) He by the Interstellar Boundary Explorer (IBEX) provide valuable insight into the physical state of and processes operating in the interstellar medium ahead of the heliosphere. The ISN He atom signals are observed at the four lowest ESA steps of the IBEX-Lo sensor. The observed signal is a mixture of the primary and secondary components of ISN He and H. Previously, only data from one of the ESA steps have been used. Here, we extend the analysis to data collected in the three lowest ESA steps with the strongest ISN He signal, for the observation seasons 2009–2015. The instrument sensitivity is modeled as a linear function of the atom impact speed onto the sensor's conversion surface separately for each ESA step of the instrument. We find that the sensitivity increases from lower to higher ESA steps, but within each of the ESA steps it is a decreasing function of the atom impact speed. This result may be influenced by the hydrogen contribution, which was not included in the adopted model, but seems to exist in the signal. We conclude that the currently accepted temperature of ISN He and velocity of the Sun through the interstellar medium do not need a revision, and we sketch a plan of further data analysis aiming at investigating ISN H and a better understanding of the population of ISN He originating in the outer heliosheath.
机译:星际边界探测器(IBEX)对星际中性星(ISN)He的直接采样观测结果提供了宝贵的洞察力,可了解日球层之前星际介质的物理状态和过程。在IBEX-Lo传感器的最低四个ESA步骤中观察到ISN He原子信号。观察到的信号是ISN He和H的主要和次要成分的混合。以前,仅使用了ESA步骤之一的数据。在这里,我们将分析范围扩展到在2009-2015年观测季节中具有最强ISN He信号的,在最低ESA的三个步骤中收集的数据。对于仪器的每个ESA步骤,仪器灵敏度均被建模为原子撞击到传感器转换表面的速度的线性函数。我们发现灵敏度从低到高的ESA步骤增加,但是在每个ESA步骤中,它是原子撞击速度的降低函数。该结果可能受到氢贡献的影响,该氢贡献未包含在采用的模型中,但似乎存在于信号中。我们得出的结论是,当前接受的ISN He的温度和通过星际介质的太阳速度不需要修订,并且我们草拟了一项旨在调查ISN H并更好地了解起源于ISN He的种群的进一步数据分析计划。在外部日鞘中。

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