Star formation at different stages of ram-pressure stripping as observed through far-ultraviolet imaging of 13 GASP galaxies

Fuente: arXiv
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Autori principali: George, Koshy, Poggianti, B. M., Vulcani, B., Gullieuszik, M., Postma, J., Fritz, Jacopo, Côté, P., Jaffe, Yara L., Moretti, A., Ignesti, Alessandro, Peluso, Giorgia, Tomićić, Neven, Subramaniam, A., Ghosh, S. K., Tandon, S. N.
Natura: Preprint
Pubblicazione: 2025
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author George, Koshy
Poggianti, B. M.
Vulcani, B.
Gullieuszik, M.
Postma, J.
Fritz, Jacopo
Côté, P.
Jaffe, Yara L.
Moretti, A.
Ignesti, Alessandro
Peluso, Giorgia
Tomićić, Neven
Subramaniam, A.
Ghosh, S. K.
Tandon, S. N.
author_facet George, Koshy
Poggianti, B. M.
Vulcani, B.
Gullieuszik, M.
Postma, J.
Fritz, Jacopo
Côté, P.
Jaffe, Yara L.
Moretti, A.
Ignesti, Alessandro
Peluso, Giorgia
Tomićić, Neven
Subramaniam, A.
Ghosh, S. K.
Tandon, S. N.
contents Galaxies undergoing ram-pressure stripping develop gaseous tails that can extend several kiloparsecs outside the galaxy disc. We used far-ultraviolet and H$α$ imaging from the GASP survey to investigate how different stages of stripping affect star formation properties in the tail and disc of 13 galaxies undergoing stripping. These galaxies have different stripping strengths, as identified from the MUSE integral field spectroscopy. The star-forming knots in the disc and tails show a good correspondence between the measured FUV and H$α$ flux. This is especially true for strong and extreme cases of stripping, which have developed extended ionized gaseous tails featuring clumpy structures. The mechanism behind the H$α$ emission on the tails of these regions, which correlates well with FUV emission, is photoionization caused by young massive stars. The optical emission line ratio maps enable us to understand the emission mechanism, which can be attributed to star formation, LINER activity, or a combination of both phenomena and AGN. The star-forming regions in the emission line maps correspond well to the areas with significant FUV flux in these galaxies. Six galaxies exhibit minimal star formation in their tails, with two cases star formation is limited to the central regions and their discs are truncated. In galaxies with truncated discs, star formation is confined to a smaller region on the disc, as indicated by the FUV flux, compared to H$α$. Galaxies with strong stripping are undergoing recent star formation and are likely recent infalls. Galaxies with truncated discs confine star formation to the center, likely because they have completed a cluster crossing that depleted most of their outer gaseous disc. Galaxies with minimal FUV flux along their tails exhibit unresolved H$α$ emission which may be attributed to processes other than star formation.
format Preprint
id arxiv_https___arxiv_org_abs_2505_15066
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Star formation at different stages of ram-pressure stripping as observed through far-ultraviolet imaging of 13 GASP galaxies
George, Koshy
Poggianti, B. M.
Vulcani, B.
Gullieuszik, M.
Postma, J.
Fritz, Jacopo
Côté, P.
Jaffe, Yara L.
Moretti, A.
Ignesti, Alessandro
Peluso, Giorgia
Tomićić, Neven
Subramaniam, A.
Ghosh, S. K.
Tandon, S. N.
Astrophysics of Galaxies
Galaxies undergoing ram-pressure stripping develop gaseous tails that can extend several kiloparsecs outside the galaxy disc. We used far-ultraviolet and H$α$ imaging from the GASP survey to investigate how different stages of stripping affect star formation properties in the tail and disc of 13 galaxies undergoing stripping. These galaxies have different stripping strengths, as identified from the MUSE integral field spectroscopy. The star-forming knots in the disc and tails show a good correspondence between the measured FUV and H$α$ flux. This is especially true for strong and extreme cases of stripping, which have developed extended ionized gaseous tails featuring clumpy structures. The mechanism behind the H$α$ emission on the tails of these regions, which correlates well with FUV emission, is photoionization caused by young massive stars. The optical emission line ratio maps enable us to understand the emission mechanism, which can be attributed to star formation, LINER activity, or a combination of both phenomena and AGN. The star-forming regions in the emission line maps correspond well to the areas with significant FUV flux in these galaxies. Six galaxies exhibit minimal star formation in their tails, with two cases star formation is limited to the central regions and their discs are truncated. In galaxies with truncated discs, star formation is confined to a smaller region on the disc, as indicated by the FUV flux, compared to H$α$. Galaxies with strong stripping are undergoing recent star formation and are likely recent infalls. Galaxies with truncated discs confine star formation to the center, likely because they have completed a cluster crossing that depleted most of their outer gaseous disc. Galaxies with minimal FUV flux along their tails exhibit unresolved H$α$ emission which may be attributed to processes other than star formation.
title Star formation at different stages of ram-pressure stripping as observed through far-ultraviolet imaging of 13 GASP galaxies
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2505.15066