A dynamical measure of the black hole mass in a quasar 11 billion years ago

物理 超大质量黑洞 天体物理学 黑洞(网络) 类星体 天文 中质量黑洞 银河系 二元黑洞 恒星黑洞 太阳质量 红移 计算机网络 路由协议 布线(电子设计自动化) 计算机科学 引力波 链路状态路由协议
作者
R. Abuter,Fatmé Allouche,A. Amorim,C. Bailet,Anthony Berdeu,Jean-Philippe Berger,P. Bério,Azzurra Bigioli,O. Boebion,M.-L. Bolzer,H. Bonnet,G. Bourdarot,P. Bourget,W. Brandner,Yixian Cao,Ralf Conzelmann,Mauro Comin,Y. Clénet,Benjamin Courtney-Barrer,R. Davies,Denis Defrère,A. Delboulbé,F. Delplancke-Ströbele,R. Dembet,Jason Dexter,P. T. de Zeeuw,A. Drescher,A. Eckart,C. Édouard,F. Eisenhauer,Maximilian Fabricius,H. Feuchtgruber,Gert Finger,N. M. Förster Schreiber,P. García,R. García López,F. Gao,É. Gendron,R. Genzel,Juan Pablo Gil,S. Gillessen,Tiago Gomes,Frédéric Gonté,C. Gouvret,P. Guajardo,Sylvain Guieu,W. Hackenberg,N. Haddad,Michael Hartl,X. Haubois,F. Haußmann,G. Heißel,Th. Henning,S. Hippler,S. F. Hönig,M. Horrobin,N. Hubin,Estelle Jacqmart,L. Jocou,A. Kaufer,P. Kervella,Johann Kolb,H. Korhonen,S. Lacour,S. Lagarde,Olivier Lai,V. Lapeyrère,Romain Laugier,J.-B. Le Bouquin,J. Leftley,Pierre Léna,S.A.E. Lewis,Daizhong Liu,B. López,D. Lutz,Y. Magnard,F. Mang,A. Marcotto,D. Maurel,A. Mérand,F. Millour,Nikhil More,H. Netzer,H. Nowacki,M. Nowak,Sylvain Oberti,Thomas Ott,Laurent Pallanca,T. Paumard,K. Perraut,G. Perrin,R. Petrov,O. Pfuhl,N. Pourré,S. Rabien,Christian Rau,M. Riquelme,S. Robbe-Dubois,S. Rochat,Muhammad Salman,J. Sánchez-Bermúdez,D. Santos,Silvia Scheithauer,M. Schöller,J. Schubert,Nicolas Schuhler,J. Shangguan,Pavel Shchekaturov,Thomas Shimizu,Arnaud Sevin,Ferréol Soulez,A. Spang,Eric Stadler,A. Sternberg,C. Straubmeier,E. Sturm,Calvin Sykes,L. J. Tacconi,K. R. W. Tristram,F. Vincent,S. D. von Fellenberg,Sinem Uysal,F. Widmann,E. Wieprecht,E. Wiezorrek,J. Woillez,G. Zins
出处
期刊:Nature [Springer Nature]
卷期号:627 (8003): 281-285 被引量:8
标识
DOI:10.1038/s41586-024-07053-4
摘要

Tight relationships exist in the local universe between the central stellar properties of galaxies and the mass of their supermassive black hole. These suggest galaxies and black holes co-evolve, with the main regulation mechanism being energetic feedback from accretion onto the black hole during its quasar phase. A crucial question is how the relationship between black holes and galaxies evolves with time; a key epoch to probe this relationship is at the peaks of star formation and black hole growth 8-12 billion years ago (redshifts 1-3). Here we report a dynamical measurement of the mass of the black hole in a luminous quasar at a redshift of 2, with a look back time of 11 billion years, by spatially resolving the broad line region. We detect a 40 micro-arcsecond (0.31 pc) spatial offset between the red and blue photocenters of the H$\alpha$ line that traces the velocity gradient of a rotating broad line region. The flux and differential phase spectra are well reproduced by a thick, moderately inclined disk of gas clouds within the sphere of influence of a central black hole with a mass of 3.2x10$^{8}$ solar masses. Molecular gas data reveal a dynamical mass for the host galaxy of 6x10$^{11}$ solar masses, which indicates an under-massive black hole accreting at a super-Eddington rate. This suggests a host galaxy that grew faster than the supermassive black hole, indicating a delay between galaxy and black hole formation for some systems.
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