论文标题

打破beta:比较球形系统的质量建模方法

Breaking Beta: A comparison of mass modelling methods for spherical systems

论文作者

Read, J. I., Mamon, G. A., Vasiliev, E., Watkins, L. L., Walker, M. G., Penarrubia, J., Wilkinson, M., Dehnen, W., Das, P.

论文摘要

我们将四种不同的质量建模方法应用于球形恒星系统的一系列公开模拟数据。我们专注于仅使用视线速度数据或添加适当的运动数据的密度和速度各向异性作为半径的函数。所有方法在各向同性和切向各向异性模拟数据上的表现都很好,从而在径向范围内的95%置信区间内恢复了密度和速度各向异性,其中RHALF是半径半径。但是,径向 - 动物的模拟更具挑战性。对于仅使用视线数据,只有使用有关速度分布函数形状的信息的方法才能破坏密度曲线和速度各向异性之间的堕落,以获得两者的无偏估计。可以通过直接使用高阶“病毒形状参数”或假设当地的高斯速度分布函数来直接拟合全球相空间分布函数来获得此形状信息,但可以沿着视线沿线进行自言自语。包括适当的运动数据可以进一步改进,在这种情况下,所有方法都可以很好地恢复径向密度和速度各向异性概况。

We apply four different mass modelling methods to a suite of publicly available mock data for spherical stellar systems. We focus on the recovery of the density and velocity anisotropy as a function of radius, using either line-of-sight velocity data only, or adding proper motion data. All methods perform well on isotropic and tangentially anisotropic mock data, recovering the density and velocity anisotropy within their 95% confidence intervals over the radial range 0.25 < R/Rhalf < 4, where Rhalf is the half light radius. However, radially-anisotropic mocks are more challenging. For line-of-sight data alone, only methods that use information about the shape of the velocity distribution function are able to break the degeneracy between the density profile and the velocity anisotropy to obtain an unbiased estimate of both. This shape information can be obtained through directly fitting a global phase space distribution function, by using higher order 'Virial Shape Parameters', or by assuming a Gaussian velocity distribution function locally, but projecting it self-consistently along the line of sight. Including proper motion data yields further improvements, and in this case, all methods give a good recovery of both the radial density and velocity anisotropy profiles.

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