论文标题

OB恒星的运动学,带有Lamost和Gaia目录的数据

Kinematics of OB Stars with Data from the LAMOST and Gaia Catalogues

论文作者

Bobylev, V. V., Bajkova, A. T., Karelin, G. M.

论文摘要

我们已经分析了Xiang等人列表中OB恒星的运动学。 (2021)包含$ \ sim $ 13 000单ob星星。对于这些恒星,有来自Gaia目录的光度距离估计值和适当的运动,以及来自Lamost目录的视线速度。基于单个OB恒星的样本,并使用GAIA EDR3目录中星星的光度距离和正确的运动,我们发现了组速度成分$(u_ \ odot,v_ \ odot,w_ \ odot)=(9.63,93,93,93,7.45)银河旋转角速度的参数:$Ω__0= 29.20 \ pm0.18 $ km s $ s $^{ - 1} $ kpc $^{ - 1} $,$ω^{'} _ 0 = -4.4.150 $ω^{''} _ 0 = 0.795 \ pm0.018 $ km s $^{ - 1} $ kpc $^{ - 3} $,其中单位误差$σ_0$是9.56 km s $ s $ s $^{ - 1}} $} $^{ - 1} $和$ v_0 = 236.5 $ s $ s $ s $ s $ sm. $ r_0 = 8.1 \ pm0.1 $ kpc)。基于同一OB星,我们发现了残留速度分散$(σ_1,σ_2,σ_3)=(15.13,9.69,7.98)\ PM(0.07,0.05,0.04)$ km S $ s $ s $^{ - 1} $。我们表明,使用视线速度大大增加了空间速度分散,并导致对速度$ u_ \ odot $的有偏见估计。所使用的距离的比较表明,Xiang等人的光度距离。 (2021)应将大约延长10%。

We have analyzed the kinematics of OB stars from the list by Xiang et al. (2021) that contains $\sim$13 000 single OB stars. For these stars there are photometric distance estimates and proper motions from the Gaia catalogue and line-of-sight velocities from the LAMOST catalogue. Based on a sample of single OB stars and using the photometric distances and proper motions of stars from the Gaia EDR3 catalogue, we have found the group velocity components $(U_\odot,V_\odot,W_\odot)=(9.63,9.93,7.45)\pm(0.27,0.34,0.10)$ km s$^{-1}$, and the following parameters of the angular velocity of Galactic rotation: $Ω_0=29.20\pm0.18$ km s$^{-1}$ kpc$^{-1}$, $Ω^{'}_0=-4.150\pm0.046$ km s$^{-1}$ kpc$^{-2}$ and $Ω^{''}_0=0.795\pm0.018$ km s$^{-1}$ kpc$^{-3}$, where the error per unit weight $σ_0$ is 9.56 km s$^{-1}$ and $V_0=236.5\pm3.3$ km s$^{-1}$ (for the adopted $R_0=8.1\pm0.1$ kpc). Based on the same OB stars, we have found the residual velocity dispersions $(σ_1,σ_2,σ_3)=(15.13,9.69,7.98)\pm(0.07,0.05,0.04)$ km s$^{-1}$. We show that using the line-of-sight velocities increases significantly the space velocity dispersion and leads to a biased estimate of the velocity $U_\odot$. A comparison of the distances scales used has shown that the photometric distances from Xiang et al. (2021) should be lengthened approximately by 10%.

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