Bar-driven gas redistribution suppresses star formation in spiral galaxies: Evidence from dust lanes in NGC 3351
arXiv:2605.27663 · doi:10.1051/0004-6361/202660577
Abstract
We present observational evidence, based on high-resolution imaging from HST, ALMA, and AstroSat/UVIT, that the redistribution of gas driven by the bar in the face-on spiral galaxy NGC 3351 results in suppressed star formation in its central regions. Dust and molecular gas coexist in galaxies, allowing dust lanes observed in galaxies to be used to probe the distribution of gas. In the central regions of NGC 3351, covered by the stellar bar, dust lanes are visible in the HST F438W-F814W color map, but surprisingly, these areas lack molecular gas and recent star formation. The inward orientation of the dust lane morphology towards the galaxy's center suggests that molecular gas may have once been present in this region, but was redistributed to the center due to the stellar bar's action. The direction of dust lanes, therefore, indicates the past inflows of gas toward the galaxy center, with their morphology consistently oriented inward along the bar. These findings support a scenario where the stellar bar has efficiently channeled molecular gas into the nucleus, building the central reservoir while suppressing star formation along the bar.
Accepted for publication in A&A Letter to the Editor
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