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◆ Astronomy and Astrophysics2026-07-31· Physics

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

Xunchuan Liu

原始摘要(英文原文)· Original abstract
FAST 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 ∼ 20, across a velocity ( , , 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 (-150 to -100, ) 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. H i -1 LSR) range of -220 to -180, . 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 ∼ 2, , implying an ambient gas density of ∼ 10^ -1 cm^ -3 -3 cm^ -3 -1
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Ram pressure shaping high-velocity cloud droplets. FAST HI observations of HVC AC-III and the theoretical interpretation — 科研速览 Science Skim