论文标题

关于圆环培养基的斑驳外观和前景吸收的影响

On the patchy appearance of the circum-Galactic medium and the influence of foreground absorption

论文作者

Ponti, G., Sanders, J. S., Locatelli, N., Zheng, X., Zhang, Y., Yeung, M., Freyberg, M., Dennerl, K., Comparat, J., Merloni, A., Di Teodoro, E., Sasaki, M., Reiprich, T. H.

论文摘要

最近的研究表明,银河系介质的发射在$ \ sim10^\ circ $的角度尺度上显示出相对较高的斑点。利用频谱roentgen gamma erosita最终赤道深度调查(EFEDS),我们旨在限制从次级到一百平方度的量表上软X射线表面亮度的任何变化。我们观察到几个度尺度的调制量约为60美元,而对于更高的能量的调制量减少。观察到的斑块在两年内稳定,因此不包括太阳能电荷交换引起的。我们还观察到当地宇宙中这种过度和星系密度之间没有相关性,这表明在宇宙网络的细丝中,热重子没有强大的贡献。取而代之的是,软X射线发射与吸收材料的色谱柱密度抗相关。确实,我们可以通过简单地改变吸收位于局部热气泡以外的发射成分的物质的柱密度来重现明亮和黑暗区域的光谱,而不需要对内在发射的调节。在高银河纬度上,Erosita所有天空图显示了与EFEDS领域中观察到的软X射线扩散发射的斑块,因此,整个天空中都可能存在相同的“吸收调节”。这些结果强调了准确处理吸收效应的重要性,以确定尾层培养基的斑点。

Recent studies have demonstrated that the emission from the circumgalactic medium of the Milky Way displays a relatively high degree of patchiness on angular scales of $\sim10^\circ$. Taking advantage of the Spectrum Roentgen Gamma eROSITA Final Equatorial Depth Survey (eFEDS), we aim to constrain any variation in the soft X-ray surface brightness on scales going from sub-degree to a hundred square degrees. We observe modulations of about $60$% on scales of several degrees and decreasing for higher energies. The observed patchiness is stable over a period of two years, therefore excluding that it is induced by Solar wind charge exchange. We also observe no correlation between such excess and the density of galaxies in the Local Universe, suggesting no strong contribution from the hot baryons in the filaments of the Cosmic web. Instead, the soft X-ray emission is anti-correlated with the column density of absorbing material. Indeed, we can reproduce the spectrum of the bright and dark regions by simply varying the column density of the matter absorbing the emission components located beyond the Local Hot Bubble, while no modulation of the intrinsic emission is required. At high Galactic latitudes, the eROSITA all sky map shows patchiness of the soft X-ray diffuse emission similar to the one observed in the eFEDS field, it is therefore likely that the same "absorption-modulation" is present over the entire sky. These results highlight the importance of an accurate treatment of the absorption effects, to determine the patchiness of the circumgalactic medium.

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