The MUSE Ultra Deep Field (MUDF). IV. A pair of X-ray weak quasars at the heart of two extended Ly{\alpha} nebulae
Elisabeta Lusso, Emanuele Nardini, Michele Fumagalli, Matteo Fossati,, Fabrizio Arrigoni Battaia, Mitchell Revalski, Marc Rafelski, Valentina, D'Odorico, Celine Peroux, Stefano Cristiani, Pratika Dayal, Francesco Haardt,, Emma K. Lofthouse

TL;DR
This study uses XMM-Newton observations to analyze two quasars in the MUDF, revealing they are X-ray weak possibly due to intrinsic factors, and finds no clear link between nebulae size and quasar luminosity.
Contribution
First detailed X-ray characterization of MUDF quasars showing intrinsic X-ray weakness and lack of correlation between nebulae properties and nuclear luminosity.
Findings
Both quasars are X-ray underluminous compared to similar UV luminosity objects.
No correlation between nebulae area and quasar X-ray luminosity or photon index.
Quasar ionization power does not strongly influence nebulae morphology or size.
Abstract
We present the results obtained from follow-up observations of the MUSE Ultra Deep Field (MUDF) at X-ray energies with XMM-Newton. The MUDF is centred on a unique field with two bright, physically associated quasars at , separated by 500 kpc in projection. Both quasars are embedded within extended Ly nebulae ( at a surface brightness flux level of ), whose elongated morphology is suggestive of an extended filament connecting the quasar haloes. The new X-ray observations presented here allow us to characterise the physical properties (e.g. X-ray slope, luminosities, gas column densities) in the innermost region of the MUDF quasars. We find that both quasars are X-ray underluminous compared to objects at similar ultraviolet luminosities. Based on our X-ray spectral analysis,…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astrophysical Phenomena and Observations · Astrophysics and Cosmic Phenomena
