论文标题

局部螺旋星系动力学中非最少耦合暗物质的经验证据?

Empirical Evidence of Non-Minimally Coupled Dark Matter in the Dynamics of Local Spiral Galaxies?

论文作者

Gandolfi, Giovanni, Lapi, Andrea, Liberati, Stefano

论文摘要

我们在暗物质(DM)和局部螺旋星系动力学中的重力之间寻找非最小耦合(NMC)的经验证据。特别是,我们考虑了一种理论上动机的NMC,它可能是由粗粒DM场的集体行为(例如,通过Bose-Einstein Concensation)动态产生的,该行为具有平均/相干长度$ L $。在牛顿限制中,该NMC构成通过$ l^{2} \ nabla^{2}ρ$与与DM密度本身的拉普拉斯级成比例的术语修改泊松方程。我们表明,当对冷DM颗粒的标准navarro-frenk-white(NFW)曲线上充当扰动时,就可以在磁盘内的总径向加速度和旋转速度方面实质上改变星系的动力学特性。具体而言,我们发现该NMC模型可以正确地拟合光半径下具有不同速度的局部螺旋星系的堆叠旋转曲线,包括矮人和低表面亮度系统,与现象学Burkert概况相比,精确度可比,甚至更好。最后,我们表明,将$ l $ $ $ $与从上述旋转曲线分析中获得的光环质量相比的缩放量的缩放量可以充分地重现形状和归一化的径向加速度(或RAR),并归一化至达尔夫球形星系,这是对替代性DM构成替代性DM的构成重大挑战的严重挑战。

We look for empirical evidence of a non-minimal coupling (NMC) between dark matter (DM) and gravity in the dynamics of local spiral galaxies. In particular, we consider a theoretically motivated NMC that may arise dynamically from the collective behavior of the coarse-grained DM field (e.g., via Bose-Einstein condensation) with averaging/coherence length $L$. In the Newtonian limit, this NMC amounts to modify the Poisson equation by a term $L^{2} \nabla^{2} ρ$ proportional to the Laplacian of the DM density itself. We show that such a term, when acting as a perturbation over the standard Navarro-Frenk-White (NFW) profile of cold DM particles, can substantially alter the dynamical properties of galaxies, in terms of their total radial acceleration within the disk and rotation velocity. Specifically, we find that this NMC model can properly fit the stacked rotation curves of local spiral galaxies with different velocities at the optical radius, including dwarfs and low-surface brightness systems, at a level of precision comparable to, and in some instances even better than, the phenomenological Burkert profile. Finally we show that, extrapolating down to smaller masses the scaling of $L$ vs. halo mass found from the above rotation curve analysis, the NMC model can adequately reproduce the radial acceleration relation (or RAR) in shape and normalization down to the dwarf spheroidal galaxy range, a task which constitutes a serious challenge for alternative DM models even inclusive of baryonic effects.

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