Papers
Topics
Authors
Recent
Search
2000 character limit reached

KBSS-InCLOSE II: First Detailed Insights on the Inner CGM of Low-Mass z∼2.3z\sim2.3 Galaxies

Published 25 Sep 2026 in astro-ph.GA | (2609.30834v1)

Abstract: We present results from an extension to the Keck Baryonic Structure Survey (KBSS) that focuses on the Inner Circumgalactic Medium (CGM) of QSO Line Of Sight Emitting galaxies at z∼\sim2.3 (InCLOSE). We analyze two low-mass galaxies log⁡(M∗/M⊙)≤9\log{(\rm{M_*} / \rm{M_\odot})} \leq 9 that are within small a projected distance of a QSO Dtran≤50 kpcD_{\rm tran} \leq 50~{\rm kpc} (Dtran/Rvir≤0.75D_{\rm tran} /R_{\rm vir} \leq 0.75). One galaxy is detected as a bright Lyman- Emitter with Keck/KCWI (confirmed with follow-up Keck/MOSFIRE spectra), and the other as a serendipitous line emitter with Keck/MOSFIRE. Both galaxies have nebular and morphological properties consistent with those of typical low-mass z∼\sim2.3 star-forming galaxies. Analysis of their CGM absorption as seen with Keck/HIRES spectra of the background QSOs shows no detections of low-ionization metal absorption (low-ions; e.g., Si II), ubiquitous detections of intermediate- (e.g., C IV) and high-ions (O VI), kinematically complex absorption (≥\geq7 components per galaxy halo) spread over ∣Δv∣±150 km s<sup>−1|Δv|\pm 150~{\rm km~s<sup>{-1}}, and no unambiguously unbound gas is detected in either galaxy halo. We analyze the thermal properties of a subset of CGM components, finding that the majority (6/10) have temperatures consistent with heating from the metagalactic UV background (log⁡(T/K)med=4.0\log{(T/\rm{K})_{\mathrm{med}}}=4.0) while the remainder possess short-lived, intermediate temperature gas that would require additional heating or rapid replenishment (4.6≤log⁡(T/K)≤5.14.6 \leq \log{(T/\rm{K})} \leq 5.1), the internal energy of these absorbers are dominated by thermal broadening, their internal (turbulent) velocities are all subsonic, while their motions through the halo are likely supersonic. These results hint that the z2.3 CGM changes with stellar mass in terms of kinematic complexity and unbound gas fraction, while thermal properties remain similar.

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.