论文标题

EDIG-CHANGES I:围绕Chang-Es星系的外推离电离气体(EDIG)延长的Hα发射

eDIG-CHANGES I: Extended Hα Emission from the Extraplanar Diffuse Ionized Gas (eDIG) around CHANG-ES Galaxies

论文作者

Lu, Li-Yuan, Li, Jiang-Tao, Vargas, Carlos J., Beck, Rainer, Bregman, Joel N., Dettmar, Ralf-Jurgen, English, Jayanne, Fang, Taotao, Heald, George H., Li, Hui, Qu, Zhijie, Rand, Richard J., Stein, Michael, Wang, Q. Daniel, Wang, Jing, Wiegert, Theresa, Zheng, Yun

论文摘要

外推散射离子气体(EDIG)代表星系周围的凉爽/温暖的气体储层。我们对Chang-es样品(EDIG-Changes Project)的22个附近边缘螺旋星系的H $α$图像进行空间分析,并使用APO 350万望远镜进行,以研究其EDIG。我们对样品星系的垂直强度曲线进行了指数拟合,其中16个可以分解为薄磁盘,再加上扩展的厚磁盘分量。扩展组件的比例高度(h)的中值为$ 1.13 \ pm 0.14 $ kpc。我们发现H与SFR之间存在紧密的倍率相关性。此外,从最佳拟合SFR-H关系中单个星系的偏移显示了与SFR_SD的显着反相关。这表明具有更强烈的恒星形成的星系往往会过分扩展。结合文献的数据,我们发现EDIG属性与星系性能之间的相关性扩展到更广泛的范围。我们进一步将EDIG的垂直扩展与其他CGM相的多波长测量值进行了比较。我们发现EDIG比中性气体(HI 21-CM线)更伸展,表明存在一些扩展的电离源。大多数星系的X射线比例高于H,这表明在浅观测中检测到的大多数X射线发射实际上来自厚磁盘。 H可与L波段无线电连续尺度高度相当,两者都比在较高频率(C波段)下略大,在较高的频率(C波段)中,冷却更强,并且热贡献可能更大。可比的H $α$和L波段尺度的高度表明热电子和非热电子具有相似的空间分布。这进一步表明,热气体,宇宙射线和磁场可能接近能量均衡。

The extraplanar diffuse ionized gas (eDIG) represents the cool/warm ionized gas reservoir around galaxies. We present a spatial analysis of H$α$ images of 22 nearby edge-on spiral galaxies from the CHANG-ES sample (the eDIG-CHANGES project), taken with the APO 3.5m telescope, in order to study their eDIG. We conduct an exponential fit to the vertical intensity profiles of the sample galaxies, of which 16 can be decomposed into a thin disk plus an extended thick disk component. The median value of the scale height (h) of the extended component is $1.13\pm 0.14$ kpc. We find a tight sublinear correlation between h and the SFR. Moreover, the offset of individual galaxies from the best-fit SFR-h relation shows significant anti-correlation with SFR_SD. This indicates that galaxies with more intense star formation tend to have disproportionately extended eDIG. Combined with data from the literature, we find that the correlations between the eDIG properties and the galaxies' properties extend to broader ranges. We further compare the vertical extension of the eDIG to multi-wavelength measurements of other CGM phases. We find the eDIG to be slightly more extended than the neutral gas (HI 21-cm line), indicating the existence of some extended ionizing sources. Most galaxies have an X-ray scale height smaller than the h, suggesting that the majority of the X-ray emission detected in shallow observations are actually from the thick disk. The h is comparable to the L-band radio continuum scale height, both slightly larger than that at higher frequencies (C-band), where the cooling is stronger and the thermal contribution may be larger. The comparable H$α$ and L-band scale height indicates that the thermal and non-thermal electrons have similar spatial distributions. This further indicates that the thermal gas, the cosmics rays, and the magnetic field may be close to energy equipartition.

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