Exploring the gaseous halos of z>3 radio galaxies with UVES and JWST/NIRSpec

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Main Authors: Ritter, Jelena, Wang, Wuji, Wylezalek, Dominika, De Breuck, Carlos, Vernet, Joël, Battaia, Fabrizio Arrigoni
Format: Preprint
Published: 2026
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author Ritter, Jelena
Wang, Wuji
Wylezalek, Dominika
De Breuck, Carlos
Vernet, Joël
Battaia, Fabrizio Arrigoni
author_facet Ritter, Jelena
Wang, Wuji
Wylezalek, Dominika
De Breuck, Carlos
Vernet, Joël
Battaia, Fabrizio Arrigoni
contents High-redshift radio galaxies (HzRGs) are among the most massive galaxies in the Universe and sites of extreme active galactic nuclei (AGN) feedback processes, powering energetic radio jets. They are typically embedded in giant Ly$α$ halos that are known to extend over $100\,\text{kpc}$ into the circumgalactic medium (CGM). In this paper, we target the Ly$α$ halos around four high-redshift radio galaxies in a redshift range of 3.1 < z < 4.5 using high-resolution spectroscopy from the Ultraviolet Echelle Spectograph (UVES) at the VLT, focusing on absorption features in the Ly$α$ emission that trace neutral hydrogen (HI) systems. We compare the UVES data to Multi Unit Spectroscopic Explorer (MUSE) observations of the same targets and find that the higher spectral resolution of UVES ($Δv \approx 12\,\text{km} \text{s}^{-1}$) allows for a more complete identification of absorbers and reveals the splitting of deep absorbers into multiple components. We identify between 6 and 14 absorbers for each target in our sample with column densities of $N_{\text{HI}} = 10^{12}-10^{17}\,\text{cm}^{-2}$. About 70 % of the absorbers can be spatially resolved along the radio jet axis, showing minimal variation in column densities over extents of more than 30 kpc. Our results indicate that a fraction of the absorbers may be physically associated with the host systems. Complementary JWST/NIRSpec observations of two of the targets, 4C+03.24 and TNJ0205, reveal potential outflows in the ionized interstellar medium (ISM). We discuss a kinematic link between the [OIII]-emitting gas and the cool halo gas as traced by Ly$α$, suggesting a common outflow origin.
format Preprint
id arxiv_https___arxiv_org_abs_2604_26027
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Exploring the gaseous halos of z>3 radio galaxies with UVES and JWST/NIRSpec
Ritter, Jelena
Wang, Wuji
Wylezalek, Dominika
De Breuck, Carlos
Vernet, Joël
Battaia, Fabrizio Arrigoni
Astrophysics of Galaxies
High-redshift radio galaxies (HzRGs) are among the most massive galaxies in the Universe and sites of extreme active galactic nuclei (AGN) feedback processes, powering energetic radio jets. They are typically embedded in giant Ly$α$ halos that are known to extend over $100\,\text{kpc}$ into the circumgalactic medium (CGM). In this paper, we target the Ly$α$ halos around four high-redshift radio galaxies in a redshift range of 3.1 < z < 4.5 using high-resolution spectroscopy from the Ultraviolet Echelle Spectograph (UVES) at the VLT, focusing on absorption features in the Ly$α$ emission that trace neutral hydrogen (HI) systems. We compare the UVES data to Multi Unit Spectroscopic Explorer (MUSE) observations of the same targets and find that the higher spectral resolution of UVES ($Δv \approx 12\,\text{km} \text{s}^{-1}$) allows for a more complete identification of absorbers and reveals the splitting of deep absorbers into multiple components. We identify between 6 and 14 absorbers for each target in our sample with column densities of $N_{\text{HI}} = 10^{12}-10^{17}\,\text{cm}^{-2}$. About 70 % of the absorbers can be spatially resolved along the radio jet axis, showing minimal variation in column densities over extents of more than 30 kpc. Our results indicate that a fraction of the absorbers may be physically associated with the host systems. Complementary JWST/NIRSpec observations of two of the targets, 4C+03.24 and TNJ0205, reveal potential outflows in the ionized interstellar medium (ISM). We discuss a kinematic link between the [OIII]-emitting gas and the cool halo gas as traced by Ly$α$, suggesting a common outflow origin.
title Exploring the gaseous halos of z>3 radio galaxies with UVES and JWST/NIRSpec
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2604.26027