A search for correlations between turbulence and star formation in LITTLE THINGS and THINGS galaxies

B. Elmegreen, D. Hunter, Zorayda Martinez, Haylee N. Archer, C. Simpson, P. Cigan
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Abstract

Abstract Azimuthal variations in HI velocity dispersion do not correlate with variations in the star formation rate per unit area, SFR/A, suggesting that local star formation does not increase HI turbulence significantly. These variations are determined for each pixel in HI and FUV maps of THINGS and LITTLE THINGS galaxies by subtracting the average radial profiles from the measured quantities. The kinetic energy density and HI surface density increase slightly with SFR/A, suggesting that feedback goes into pushing the local dense gas around without increasing the velocity dispersion. We suggest that star formation feedback does not promote large-scale stability against gravitational forces through turbulence regulation, and that gravitational energy from recurrent instabilities drives turbulence on galactic scales.
在LITTLE THINGS和THINGS星系中寻找湍流与恒星形成之间的相关性
HI速度色散的方位角变化与单位面积恒星形成速率SFR/A的变化不相关,表明局部恒星形成不会显著增加HI湍流。这些变化是通过从测量量中减去平均径向轮廓来确定的,在物体和小物体星系的HI和FUV图中每个像素。随着SFR/A的增加,动能密度和HI表面密度略有增加,说明反馈作用推动了局部致密气体的流动,但没有增加速度弥散。我们认为恒星形成反馈并没有通过湍流调节来促进引力的大尺度稳定性,而来自周期性不稳定性的引力能驱动了星系尺度上的湍流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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