paper

Tracing Lyman alpha escape in the CRISTAL-02 galaxy at z~5.3

arXiv:2608.19439

Abstract

We investigate the mechanisms regulating Lyman-alpha (Ly) escape in the star-forming galaxy CRISTAL-02 at z~5.3. The galaxy has clumpy morphology, suggestive that it may be interacting with other system(s). Two clumps (A and B, hereafter) are suggested as a site for intense star-formation or potential AGN candidates. We investigate how the local gas, dust, and feedback shape the escape of Ly photons around these clumps. Using VLT/MUSE and JWST/NIRSpec IFU observations, complemented by NIRCam UV imaging, we constructed spatially matched emission-line maps. We derived flux, line-ratio, and extinction maps, together with spatially resolved Ly escape fractions and ionizing photon production efficiencies. We find that Ly is significantly more extended than H and UV, reaching ~33 kpc and preferentially extending along the cold molecular gas outflow traced by [C II] emission. Clumps A and B show contrasting Ly properties: Clump A has lower dust attenuation and enhanced Ly/H ratios and escape fraction, whereas Clump B is brighter in H and UV but has suppressed Ly- despite a higher ionizing photon production efficiency. These results indicate that Ly escape is strongly influenced by the local H I geometry, dust, and outflows and cannot be explained by ionizing photon production alone. The observed Ly morphology and zELDA radiative transfer modeling favor an outflow-driven escape scenario, while the available data cannot uniquely distinguish between AGN and star formation-driven feedback.

13 pages, 8 figures, 1 table. Accepted for publication in A&A