论文标题
限制超轻质玻色粒暗物质,并观察到S2的轨道和运动学
Constraining ultralight bosonic dark matter with Keck observations of S2's orbit and kinematics
论文作者
论文摘要
预计超轻的骨气暗物质能够在银河中心的超级质量黑洞(SMBH)周围形成云。随着SMBH周围恒星运动学的观察到越来越高的精度,可以检测到这种暗物质云的微小影响,包括其重力扰动和与普通物质的直接耦合。在这项工作中,我们使用S2星的精确轨道测量围绕SGR〜A*搜索标量云的可能证据。我们解决了Newtonian方程后的一阶方程,同时考虑了标量云的扩展质量分布以及通过HIGGS门户或光子门户网站相互作用的附加耦合引起的频移。此外,我们还研究了气体和恒星残留物中天体物理幂律成分的影响。我们发现,S2恒星的星体和光谱数据与SGR〜A*点状质量的场景非常一致。因此,我们得出了新相互作用和扩展质量的耦合的上限,并且没有天体物理成分的贡献。希格斯/光子耦合的极限和标量云的扩展质量是标量质量窗口最严格的范围,介于$ 3.2 \ times 10^{ - 19} $ 〜ev和$ 1.6 \ times 10^{ - 18} $ 〜ev之间。
Ultralight bosonic dark matter is expected to be able to form a cloud surrounding the supermassive black hole (SMBH) in the Galactic center. With increasing precision of the observations of the stellar kinematics around the SMBH, tiny effects from such a dark matter cloud, including its gravitational perturbation and the direct coupling with the ordinary matter may be detectable. In this work, we search for possible evidence of the scalar cloud using accurate orbital measurements of the S2 star around Sgr~A*. We solve the first order Post-Newtonian equation, considering simultaneously the extended mass distribution of the scalar cloud and the frequency shift induced by the additional coupling via Higgs portal or photon portal interaction. Furthermore, we also investigate the impact of an astrophysical power-law component from the gas and stellar remnants. We find that the astrometric and spectroscopic data of the S2 star are well consistent with the scenario of a point-like mass of Sgr~A*. We thus derive upper limits of the coupling of the new interaction and the extended mass, with and without the contribution from the astrophysical component. The limits of the Higgs/photon coupling and the extended mass of the scalar cloud are the most stringent ones for the scalar mass window between $3.2\times 10^{-19}$~eV and $1.6\times 10^{-18}$~eV.