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Pressure and Ionization Balances in the Circum-Heliospheric Interstellar Medium and the Local Bubble

机译:绕旋涡星际介质和局部气泡中的压力和电离平衡

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A disconcerting mismatch of thermal pressures for two media in contact with each other, (1) the warm, Circum-Heliospheric Interstellar Medium (CHISM) and (2) the very hot material within a much larger region called the Local Bubble (LB), has troubled astronomers for over two decades. A possible resolution of this problem, at least in part, now seems possible. We now understand that earlier estimates for the average electron density in the very hot LB plasma were inflated by an unrecognized foreground contamination to the low energy diffuse X-ray background measurements. This foreground illumination arises from photons emitted by charge exchange reactions between solar wind ions and neutral atoms from the interstellar medium that enter into the heliosphere. However, with the resolution of this problem comes a new one. The high ionization fraction of helium in the CHISM, relative to that of hydrogen, could be understood in terms of the effects from a strong flux of EUV and X-ray radiation coming from both the Local Bubble and a conductive interface around the CHISM. A revision of this interpretation may now be in order, now that the photoionization rate from radiation emitted by hot gas the Local Bubble is lower than previously assumed.
机译:两种相互接触的介质的热压令人不安,(1)温暖的绕圈-大气层星际介质(CHISM)和(2)在更大的区域内称为局部气泡(LB)的高温物质,困扰着天文学家二十多年了。现在似乎有可能至少部分解决这个问题。我们现在了解到,对于低能扩散X射线背景测量,无法识别的前景污染加剧了对非常热的LB等离子体中平均电子密度的早期估计。这种前景照明来自太阳风离子与来自进入星际层的星际介质的中性原子之间的电荷交换反应所发射的光子。但是,随着这一问题的解决,出现了一个新问题。相对于氢,CHISM中氦的高电离度可以理解为来自局部气泡和CHISM周围导电界面的极高EUV和X射线辐射通量的影响。现在可能需要对此解释进行修订,因为来自局部气泡的热气发射的辐射的光电离速率低于先前的假设。

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