首页> 外文期刊>The Astrophysical Journal. Supplement Series >Interstellar gas flow parameters derived from interstellar boundary explorer-Lo observations in 2009 and 2010: Analytical analysis
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Interstellar gas flow parameters derived from interstellar boundary explorer-Lo observations in 2009 and 2010: Analytical analysis

机译:从2009年和2010年的星际边界探测器探测到的星际气体流量参数:分析

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Neutral atom imaging of the interstellar gas flow in the inner heliosphere provides the most detailed information on physical conditions of the surrounding interstellar medium (ISM) and its interaction with the heliosphere. The Interstellar Boundary Explorer (IBEX) measured neutral H, He, O, and Ne for three years. We compare the He and combined O+Ne flow distributions for two interstellar flow passages in 2009 and 2010 with an analytical calculation, which is simplified because the IBEX orientation provides observations at almost exactly the perihelion of the gas trajectories. This method allows separate determination of the key ISM parameters: inflow speed, longitude, and latitude, as well as temperature. A combined optimization, as in complementary approaches, is thus not necessary. Based on the observed peak position and width in longitude and latitude, inflow speed, latitude, and temperature are found as a function of inflow longitude. The latter is then constrained by the variation of the observed flow latitude as a function of observer longitude and by the ratio of the widths of the distribution in longitude and latitude. Identical results are found for 2009 and 2010: an He flow vector somewhat outside previous determinations (λ _(ISM∞) = 790+30(-35), β _(ISM∞) = -49 02, V _(ISM∞) = 23.5 + 3.0(-2.0)kms ~(-1), T _(He) = 5000-8200K), suggesting a larger inflow longitude and lower speed. The O+Ne temperature range, T _(O+Ne) = 5300-9000K, is found to be close to the upper range for He and consistent with an isothermal medium for all species within current uncertainties.
机译:内部日球层中星际气流的中性原子成像可提供有关周围星际介质(ISM)的物理状况及其与日球层相互作用的最详细信息。星际边界探测器(IBEX)连续三年测量了中性H,He,O和Ne。我们通过分析计算比较了2009年和2010年两个星际流道的He流量和O + Ne合并流量分布,这是简化的,因为IBEX方向几乎可以精确地观测到气体轨迹的近日点。这种方法可以单独确定ISM的关键参数:流入速度,经度和纬度以及温度。因此,不需要补充方法中的组合优化。根据观察到的经度和纬度的峰值位置和宽度,可以发现流入速度,纬度和温度是流入经度的函数。然后,后者受观测到的水流纬度随观测者经度的变化的限制,并受到经纬度分布宽度的比率的限制。对于2009年和2010年发现了相同的结果:一个He流量矢量,它在先前的确定范围之外(λ_(ISM∞)= 790 + 30(-35),β_(ISM∞)= -49 02,V _(ISM∞) = 23.5 + 3.0(-2.0)kms〜(-1),T _(He)= 5000-8200K),表明流入经度较大,速度较低。 O + Ne温度范围T _(O + Ne)= 5300-9000K,被发现接近He的上限,并且与当前不确定性内所有物种的等温介质一致。

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