Using the motion of S2 to constrain vector clouds around SgrA*

GRAVITY Collaboration, A. Foschi, R. Abuter, K. Abd El Dayem, N. Aimar, P. Amaro Seoane, A. Amorim, J. P. Berger, H. Bonnet, G. Bourdarot, W. Brandner, R. Davies,P. T. de Zeeuw, D. Defrère, J. Dexter, A. Drescher, A. Eckart, F. Eisenhauer,N. M. Förster Schreiber,P. J. V. Garcia, R. Genzel, S. Gillessen, T. Gomes, X. Haubois, G. Heißel,Th. Henning, L. Jochum, L. Jocou, A. Kaufer, L. Kreidberg, S. Lacour, V. Lapeyrère, J. -B. Le Bouquin, P. Léna, D. Lutz, F. Mang, F. Millour, T. Ott, T. Paumard, K. Perraut, G. Perrin,O. Pfuhl, S. Rabien, D. C. Ribeiro, M. Sadun Bordoni, S. Scheithauer, J. Shangguan, T. Shimizu, J. Stadler, C. Straubmeier, E. Sturm, M. Subroweit,L. J. Tacconi, F. Vincent,S. von Fellenberg, J. Woillez

arxiv(2023)

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摘要
The dark compact object at the centre of the Milky Way is well established to be a supermassive black hole with mass $M_{\bullet} \sim 4.3 \cdot 10^6 \, M_{\odot}$, but the nature of its environment is still under debate. In this work, we used astrometric and spectroscopic measurements of the motion of the star S2, one of the closest stars to the massive black hole, to determine an upper limit on an extended mass composed of a massive vector field around Sagittarius A*. For a vector with effective mass $10^{-19} \, \rm eV \lesssim m_s \lesssim 10^{-18} \, \rm eV$, our Markov Chain Monte Carlo analysis shows no evidence for such a cloud, placing an upper bound $M_{\rm cloud} \lesssim 0.1\% M_{\bullet}$ at $3\sigma$ confidence level. We show that dynamical friction exerted by the medium on S2 motion plays no role in the analysis performed in this and previous works, and can be neglected thus.
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