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ON THE LOCAL DARK MATTER DENSITY

机译:关于局部暗物质密度

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An analysis of the kinematics of 412 stars at 1-4 kpc from the Galactic midplane by Moni Bidin et?al. has claimed to derive a local density of dark matter that is an order of magnitude below standard expectations. We show that this result is incorrect and that it arises from the assumption that the mean azimuthal velocity of the stellar tracers is independent of Galactocentric radius at all heights. We substitute the assumption, supported by data, that the circular speed is independent of radius in the midplane. We demonstrate that the assumption of constant mean azimuthal velocity is implausible by showing that it requires the circular velocity to drop more steeply than allowed by any plausible mass model, with or without dark matter, at large heights above the midplane. Using the approximation that the circular-velocity curve is flat in the midplane, we find that the data imply a local dark matter density of 0.008 ± 0.003 M ☉ pc–3 = 0.3 ± 0.1 GeV cm–3, fully consistent with standard estimates of this quantity. This is the most robust direct measurement of the local dark matter density to date.
机译:Moni Bidin等人分析了距银河系中平面1-4 kpc处的412颗恒星的运动学。据称,暗物质的局部密度比标准期望值低一个数量级。我们证明了这个结果是不正确的,并且它是由这样的假设引起的,即恒星示踪剂的平均方位角速度在所有高度均与半圆角半径无关。我们用数据支持的假设代替了圆周速度与中平面半径无关的假设。我们证明了恒定平均方位角速度的假设是不可信的,这表明它要求圆周速度下降得比任何合理的质量模型(有或没有暗物质)在中平面以上的高处所允许的下降幅度更大。使用圆速度曲线在中平面上的近似值,我们发现数据隐含着0.008±0.003 M☉pc–3 = 0.3±0.1 GeV cm–3的局部暗物质密度,与标准估计值完全一致这个数量。迄今为止,这是对本地暗物质密度的最有效的直接测量。

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