arXiv · 2008.11863
OVI Traces Photoionized Streams With Collisionally Ionized Boundaries in Cosmological Simulations of $z \sim 1$ Massive Galaxies
Abstract
We analyse the distribution and origin of OVI in the Circumgalactic Medium (CGM) of dark-matter haloes of $\sim 10^{12}$ M$_\odot$ at $z\sim1$ in the VELA cosmological zoom-in simulations. We find that the OVI in the inflowing cold streams is primarily photoionized, while in the bulk volume it is primarily collisionally ionized. The photoionized component dominates the observed column density at large impact parameters ($\gtrsim 0.3 R_{\rm vir}$), while the collisionally ionized component dominates closer in. We find that most of the collisional OVI, by mass, resides in the relatively thin boundaries of the photoionized streams. We discuss how the results are in agreement with analytic predictions of stream and boundary properties, and their compatibility with observations. This allows us to predict the profiles of OVI and other ions in future CGM observations and provides a toy model for interpreting them.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Clayton Strawn, Santi Roca-Fàbrega, Nir Mandelker, Joel Primack, Jonathan Stern, Daniel Ceverino, Avishai Dekel, Bryan Wang, Rishi Dange. 2021-01-02. OVI Traces Photoionized Streams With Collisionally Ionized Boundaries in Cosmological Simulations of $z \sim 1$ Massive Galaxies. https://doi.org/10.1093/mnras%2Fstaa3972
Cite the original work for its findings. Save a collection to share your selection of sources.