论文标题

Abell 3827中未对齐的爱因斯坦环对暗物质的几何支持

Geometric Support for Dark Matter by an Unaligned Einstein Ring in Abell 3827

论文作者

Chen, Mandy C., Broadhurst, Tom, Lim, Jeremy, Molnar, Sandor M., Diego, Jose M., Oguri, Masamune, Lee, Lilian L.

论文摘要

在越来越严格的实验室搜索中,暗物质(DM)颗粒的未检测鼓励了替代性重力理论,其中重力仅来自可见物质。在这里,我们考虑是否可以通过重力镜头进行二维测试 - 在银河系群的核心中复制一个特别详细的爱因斯坦环3827。尽管允许这些可见成分的质量与光比随着半径而变化,并且模仿替代性重力理论,但重现了爱因斯坦环。另外,我们表明,爱因斯坦环的详细特征是通过在镜头模型中允许平滑,自由定向的DM光环来准确复制的,并且可见成分的贡献相对较小,其水平符合其观察到的亮度一致。该主要的DM组分被约束为与群内恒星的光具有相同的方向,表明群内恒星追踪该组件的引力电位。因此,Abell 3827的爱因斯坦环对替代重力理论​​提出了一个新的挑战:不仅必须在总镜头质量和可见质量之间找到一致的一致性,而且还必须找到镜头质量的预计天空分布与可见物质的一致性,而且比通过镜头数据更为严格的测试。

The non-detection of dark matter (DM) particles in increasingly stringent laboratory searches has encouraged alternative gravity theories where gravity is sourced only from visible matter. Here, we consider whether such theories can pass a two-dimensional test posed by gravitational lensing -- to reproduce a particularly detailed Einstein ring in the core of the galaxy cluster Abell 3827. We find that when we require the lensing mass distribution to strictly follow the shape (ellipticity and position angle) of the light distribution of cluster member galaxies, intracluster stars, and the X-ray emitting intracluster medium, we cannot reproduce the Einstein ring, despite allowing the mass-to-light ratios of these visible components to freely vary with radius to mimic alternative gravity theories. Alternatively, we show that the detailed features of the Einstein ring are accurately reproduced by allowing a smooth, freely oriented DM halo in the lens model, with relatively small contributions from the visible components at a level consistent with their observed brightnesses. This dominant DM component is constrained to have the same orientation as the light from the intracluster stars, indicating that the intracluster stars trace the gravitational potential of this component. The Einstein ring of Abell 3827 therefore presents a new challenge for alternative gravity theories: not only must such theories find agreement between the total lensing mass and visible mass, but they must also find agreement between the projected sky distribution of the lensing mass and that of the visible matter, a more stringent test than has hitherto been posed by lensing data.

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