X-ray view of a massive node of the Cosmic Web at z~3 I. An exceptional overdensity of rapidly accreting SMBHs

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Hauptverfasser: Travascio, A., Cantalupo, S., Tozzi, P., Vito, F., Paggi, A., Pezzulli, G., Elvis, M., Fabbiano, G., Fiore, F., Fossati, M., Fresco, A., Fumagalli, M., Galbiati, M., Lazeyras, T., Ledos, N., Pannella, M., Pensabene, A., Quadri, G., Wang, W.
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Veröffentlicht: 2024
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author Travascio, A.
Cantalupo, S.
Tozzi, P.
Vito, F.
Paggi, A.
Pezzulli, G.
Elvis, M.
Fabbiano, G.
Fiore, F.
Fossati, M.
Fresco, A.
Fumagalli, M.
Galbiati, M.
Lazeyras, T.
Ledos, N.
Pannella, M.
Pensabene, A.
Quadri, G.
Wang, W.
author_facet Travascio, A.
Cantalupo, S.
Tozzi, P.
Vito, F.
Paggi, A.
Pezzulli, G.
Elvis, M.
Fabbiano, G.
Fiore, F.
Fossati, M.
Fresco, A.
Fumagalli, M.
Galbiati, M.
Lazeyras, T.
Ledos, N.
Pannella, M.
Pensabene, A.
Quadri, G.
Wang, W.
contents Exploring SMBH population in protoclusters offers valuable insights into how environment affects SMBH growth. However, research on AGN within these areas is still limited by the small number of protoclusters known at high redshift and by the availability of associated deep X-ray observations. To understand how different environments affect AGN triggering and growth at high redshift, we investigated the X-ray AGN population in the field of the MUSE Quasar Nebula 01 (MQN01) protocluster at z ~3.25. This field is known for hosting the largest Lya nebula in the Borisova+16 sample, and one of the largest overdensities of UV-continuum selected and sub-mm galaxies found so far at this redshift. We conducted a ultra deep Chandra X-ray survey (634 ks) observation of the MQN01 field and produced a comparative analyses of the properties of the X-ray AGNs detected in MQN01 against those observed in other selected protoclusters, such as Spiderweb and SSA22. By combining the X-ray, deep MUSE and ALMA data of the same field, we identified six X-ray AGNs within a volume of 16 cMpc^2 and \pm 1000 km/s, corresponding to an X-ray AGN overdensity of ~1000. This overdensity increases at the bright end, exceeding what was observed in the Spiderweb and SSA22 within similar volumes. The AGN fraction measured in MQN01 is significantly higher (f_AGN > 20%) than in the field and increases with stellar masses, reaching a value of 100% for log(M*/Msun) > 10.5. Lastly, we observe that the average specific accretion rate (λ_sBHAR) for SMBH populations in MQN01 is higher than in the field and other protoclusters, generally increasing as one moves toward the center of the overdensity. Our results, especially the large fraction of highly accreting SMBHs in the inner regions of the MQN01 overdensity, suggest that protocluster environments offer ideal physical conditions for SMBH triggering and growth.
format Preprint
id arxiv_https___arxiv_org_abs_2410_03933
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle X-ray view of a massive node of the Cosmic Web at z~3 I. An exceptional overdensity of rapidly accreting SMBHs
Travascio, A.
Cantalupo, S.
Tozzi, P.
Vito, F.
Paggi, A.
Pezzulli, G.
Elvis, M.
Fabbiano, G.
Fiore, F.
Fossati, M.
Fresco, A.
Fumagalli, M.
Galbiati, M.
Lazeyras, T.
Ledos, N.
Pannella, M.
Pensabene, A.
Quadri, G.
Wang, W.
Astrophysics of Galaxies
Exploring SMBH population in protoclusters offers valuable insights into how environment affects SMBH growth. However, research on AGN within these areas is still limited by the small number of protoclusters known at high redshift and by the availability of associated deep X-ray observations. To understand how different environments affect AGN triggering and growth at high redshift, we investigated the X-ray AGN population in the field of the MUSE Quasar Nebula 01 (MQN01) protocluster at z ~3.25. This field is known for hosting the largest Lya nebula in the Borisova+16 sample, and one of the largest overdensities of UV-continuum selected and sub-mm galaxies found so far at this redshift. We conducted a ultra deep Chandra X-ray survey (634 ks) observation of the MQN01 field and produced a comparative analyses of the properties of the X-ray AGNs detected in MQN01 against those observed in other selected protoclusters, such as Spiderweb and SSA22. By combining the X-ray, deep MUSE and ALMA data of the same field, we identified six X-ray AGNs within a volume of 16 cMpc^2 and \pm 1000 km/s, corresponding to an X-ray AGN overdensity of ~1000. This overdensity increases at the bright end, exceeding what was observed in the Spiderweb and SSA22 within similar volumes. The AGN fraction measured in MQN01 is significantly higher (f_AGN > 20%) than in the field and increases with stellar masses, reaching a value of 100% for log(M*/Msun) > 10.5. Lastly, we observe that the average specific accretion rate (λ_sBHAR) for SMBH populations in MQN01 is higher than in the field and other protoclusters, generally increasing as one moves toward the center of the overdensity. Our results, especially the large fraction of highly accreting SMBHs in the inner regions of the MQN01 overdensity, suggest that protocluster environments offer ideal physical conditions for SMBH triggering and growth.
title X-ray view of a massive node of the Cosmic Web at z~3 I. An exceptional overdensity of rapidly accreting SMBHs
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2410.03933