New JWST redshifts for the host galaxies of CDF-S XT1 and XT2: understanding their nature
J. Quirola-V\'asquez, F. E. Bauer, P. G. Jonker, A. Levan, W. N., Brandt, M. Ravasio, D. Eappachen, Y. Q. Xue, X. C. Zheng

TL;DR
This study uses JWST and archival data to precisely determine the distances, host galaxy properties, and energetics of two extragalactic fast X-ray transients, XT1 and XT2, providing insights into their possible progenitors.
Contribution
The paper presents new JWST NIRCam, MIRI photometry, and NIRspec spectroscopy data that refine the redshifts, host galaxy characteristics, and energetics of FXTs XT1 and XT2, advancing understanding of their origins.
Findings
XT1 is at redshift z=2.76 with a low-mass host galaxy.
XT2 is at redshift z=3.4598 with a massive, highly obscured host.
Progenitor scenarios include low-luminosity GRBs and collapsars.
Abstract
CDF-S XT1 and XT2 are considered two canonical extragalactic fast X-ray transients (FXTs). In this work, we report new constraints on both FXTs, based on recent JWST NIRCam and MIRI photometry, as well as NIRspec spectroscopy for CDF-S XT2 that allow us to improve our understanding of their distances, energetics, and host galaxy properties compared to the pre-JWST era. We use the available HST and JWST archival data to determine the host properties and constrain the energetics of each FXT based on spectral energy distribution (SED) photometric fitting. The host of CDF-S XT1 is now constrained to lie at =2.76, implying a host absolute magnitude ~mag, stellar mass 1.8e8~, and star formation rate SFR/yr. These properties lie at the upper end of previous estimates, leaving CDF-S XT1 with a peak X-ray luminosity of 2.8e47 erg/s. We argue that…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Adaptive optics and wavefront sensing · Galaxies: Formation, Evolution, Phenomena
