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A JWST redshift for the host galaxy of EP250207b of z=3.2: a collapsar origin is viable

Authors: Agnes P. C. van Hoof, Peter G. Jonker, Andrew J. Levan, Nial R. Tanvir, Franz E. Bauer, Joe Bright, Francesco Carotenuto, Ting-Wan Chen, Ashley Chrimes, Gregory Corcoran, Laura Cotter, Joyce N. D. van Dalen, Rob A.J. Eyles-Ferris, Morgan Fraser, Daniele B. Malesani, Daniel Mata S\'anchez, Antonio Martin-Carrillo, Paul O'Brien, Francesca Onori, Jonathan Quirola-V\'asquez, Maria E. Ravasio, Andrea Rossi, Javi S\'anchez-Sierras, Nikhil Sarin, Steve Schulze, Hui Sun and Manuel A.P. TorresPublished: 2026-08-04Paper ID: 2608.03582Category: astro-ph.HELicense: CC BY 4.0

Abstract

We present James Webb Space Telescope (JWST) and Hubble Space Telescope (HST) observations of the field of the fast X-ray transient (FXT) detected by Einstein Probe, EP250207b, to resolve any ambiguity about the host galaxy and redshift of the FXT. EP250207b was originally associated with a nearby galaxy at z=0.082, based on its low chance alignment probability, and a binary neutron star merger origin was proposed. However, we report the detection of a background galaxy at z=3.2 at the location of EP250207b. Assuming this galaxy is the actual host galaxy, the rest-frame energetics and timescales of the event change. Furthermore, the available data are not able to rule out the presence of a supernova associated with EP250207b if at this redshift. We model the X-ray, optical, near-infrared and radio light curves using a tophat jet model implemented in Redback and find that they are consistent with an on-axis gamma ray burst afterglow. The energetics and host galaxy properties do not allow us to distinguish between a collapsar and a merger driven event.

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