paper

Ram pressure shaping high-velocity cloud droplets --- FAST HI observations of HVC AC-III and theoretical interpretation

arXiv:2510.26077

Abstract

FAST HI observations reveal unprecedented internal structures within the high-velocity cloud (HVC) AC-III, which consists of several coherent subclumps (D1--D6). These subclumps exhibit nearly constant line widths of km/s across a velocity () range of to km/s. They display a parabolic morphology consistent with ram-pressure-confined droplets whose heads are oriented toward the Galactic plane. A steady-state analytic model can reproduce both the morphologies and the exponential density profiles of these droplets. The density at the droplet heads reaches cm, implying an ambient gas density of cm, which matches the conditions of the Galactic warm ionized medium (WIM). Deviations from axial symmetry, alongside rich dynamic patterns (ridges, rings, and cavities), indicate complex internal dynamics within AC-III. These patterns may be caused by fluid loops induced by interactions between neighboring droplets. Additionally, we find an intermediate-velocity component ( to km s) showing a distinct shell-like morphology that envelops the head of AC-III, suggesting a non-contact interaction possibly mediated by the WIM. Overall, we suggest that AC-III is actively entering the Galactic WIM layer and being sculpted by external drag into a droplet-like morphology, providing an ideal laboratory for investigating the evolution of halo gas infalling toward the Galactic plane.

accepted by A&A