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首页> 外文期刊>The Astrophysical journal >PHYSICAL CONDITIONS IN ORION'S VEIL. Ⅱ. A MULTICOMPONENT STUDY OF THE LINE OF SIGHT TOWARD THE TRAPEZIUM
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PHYSICAL CONDITIONS IN ORION'S VEIL. Ⅱ. A MULTICOMPONENT STUDY OF THE LINE OF SIGHT TOWARD THE TRAPEZIUM

机译:猎户座面纱的身体状况。 Ⅱ。通往梯形视线的多分量研究

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Orion's Veil is an absorbing screen that lies along the line of sight to the Orion H II region. It consists of two or more layers of gas that must lie within a few parsecs of the Trapezium cluster. Our previous work considered the Veil as a whole and found that the magnetic field dominates the energetics of the gas in at least one component. Here we use high-resolution STIS UV spectra that resolve the two velocity components in absorption and determine the conditions in each. We derive a volume hydrogen density, 21 cm spin temperature, turbulent velocity, and kinetic temperature for each. We combine these estimates with magnetic field measurements to find that magnetic energy significantly dominates turbulent and thermal energies in one component, while the other component is close to equipartition between turbulent and magnetic energies. We observe H_2 absorption for highly excited v, J levels that are photoexcited by the stellar continuum, and detect blueshifted S~(+2) and P~(+2) ions. These ions must arise from ionized gas between the mostly neutral portions of the Veil and the Trapezium and shields the Veil from ionizing radiation. We find that this layer of ionized gas is also responsible for He I λ3889 absorption toward the Veil, which resolves a 40 year old debate on the origin of He I absorption toward the Trapezium. Finally, we determine that the ionized and mostly atomic layers of the Veil will collide in less than 85,000 yr.
机译:Orion的面纱是一个吸收性的屏幕,位于Orion H II地区的视线范围内。它由两层或多层气体组成,这些气体必须位于梯形星团的几秒之内。我们以前的工作将面纱视为一个整体,并发现磁场在至少一种成分中主导着气体的能量。在这里,我们使用高分辨率的STIS UV光谱解析吸收中的两个速度分量,并确定每个条件。我们得出了每一个的体积氢密度,21 cm旋转温度,湍流速度和动力学温度。我们将这些估计值与磁场测量结果结合起来,发现一个分量中的磁能显着支配了湍流和热能,而另一分量接近于湍流和磁能之间的均分。我们观察到由恒星连续光激发的高激发v,J水平的H_2吸收,并检测出蓝移的S〜(+2)和P〜(+2)离子。这些离子必须来自面纱和梯形的大部分中性部分之间的电离气体,并屏蔽面纱免受电离辐射。我们发现,这层离子化气体也负责面纱中He Iλ3889的吸收,这解决了40年来关于He I吸收至梯形的起源的争论。最后,我们确定面纱的电离层和大部分为原子层将在不到85,000年的时间内发生碰撞。

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