论文标题

银河质量与光的比率与超流晶的暗物质

Galactic Mass-to-Light Ratios With Superfluid Dark Matter

论文作者

Mistele, Tobias, McGaugh, Stacy, Hossenfelder, Sabine

论文摘要

我们使旋转曲线拟合以测试超流体暗物质模型。除了验证所得拟合是否合理地匹配旋转曲线数据之外,我们旨在评估它们相对于两个标准的满意度,即,所产生的出色的质量质量与光比是多么合理,拟合的拟合是否最终结束,是否在模型的超富图暗物质中,模型类似于Modified Newtonian Dynamics(Modsiagiagied Newtonian Dynamics(Mondynian Dynamics))。我们将超流体暗物质模型拟合到SPARC样品中169个星系的旋转曲线。我们发现,在恒星种群方面,使用超流氟黑物质获得的质量比率通常是可以接受的。但是,最佳拟合质量与光比对星系的大小具有不自然的依赖性,因为巨型星系在系统上的质量与光比比矮星系较低。第二个发现是,超流体通常适合旋转曲线在超级流体的力在不分别针对每个星系分别调整边界条件的情况下无法类似于Mond的旋转曲线。在这种情况下,我们不再期望超流体的暗物质再现现象学上观察到的缩放关系,这使Mond具有吸引力。另一方面,如果我们仅考虑其力近似MOND的溶液,那么超氟的总质量会与重力透镜数据保持紧张。我们得出的结论是,即使是超氟暗物质的最佳拟合仍然不令人满意,原因有两个。首先,由此产生的出色质量比率显示出星系尺寸的不自然趋势。其次,拟合不会最终属于自动类似于蒙德的策略,如果我们强迫拟合这样做,那么总的暗物质质量与强烈的镜头数据处于紧张状态。

We make rotation curve fits to test the superfluid dark matter model. In addition to verifying that the resulting fits match the rotation curve data reasonably well, we aim to evaluate how satisfactory they are with respect to two criteria, namely, how reasonable the resulting stellar mass-to-light ratios are and whether the fits end up in the regime of superfluid dark matter where the model resembles modified Newtonian dynamics (MOND). We fitted the superfluid dark matter model to the rotation curves of 169 galaxies in the SPARC sample. We found that the mass-to-light ratios obtained with superfluid dark matter are generally acceptable in terms of stellar populations. However, the best-fit mass-to-light ratios have an unnatural dependence on the size of the galaxy in that giant galaxies have systematically lower mass-to-light ratios than dwarf galaxies. A second finding is that the superfluid often fits the rotation curves best in the regime where the superfluid's force cannot resemble that of MOND without adjusting a boundary condition separately for each galaxy. In that case, we can no longer expect superfluid dark matter to reproduce the phenomenologically observed scaling relations that make MOND appealing. If, on the other hand, we consider only solutions whose force approximates MOND well, then the total mass of the superfluid is in tension with gravitational lensing data. We conclude that even the best fits with superfluid dark matter are still unsatisfactory for two reasons. First, the resulting stellar mass-to-light ratios show an unnatural trend with galaxy size. Second, the fits do not end up in the regime that automatically resembles MOND, and if we force the fits to do so, the total dark matter mass is in tension with strong lensing data.

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