论文标题
带有Baryons vs. Mond的λCDM:磁模拟中通用加速度量表的时间演变
ΛCDM with baryons vs. MOND: the time evolution of the universal acceleration scale in the Magneticum simulations
论文作者
论文摘要
修改后的牛顿动力学(MOND)是标准冷暗物质(CDM)范式的替代方法,该范式提出了牛顿运动定律以低加速度的改变,其特征是通用加速度量表A_0。它试图解释了银河旋转曲线的观察结果,并预测了星系中重型型和总加速度的特定比例关系,被称为旋转加速关系(RAR),可以将其等效地作为质量差异加速度(MDAR)。这些关系在诸如SPARC之类的观测数据中的出现导致使用标准λCDM模型对宇宙学模拟中相似关系的存在进行了研究。在这里,我们报告了使用从宇宙学的流体动力学模拟(磁性)中提取的大量星系中MOND在λCDM中预测的RAR和MDAR的存在。此外,通过在不同红移的磁性中使用星系,通过将蒙德力定律拟合到这些星系中来得出推断的加速参数A_0的进化。在磁性中,发现A_0的最佳拟合度从红移z = 0到z = 2增加了大约3倍。这提供了宇宙学模拟的强大测试,以区分MOND和λCDM。
MOdified Newtonian Dynamics (MOND) is an alternative to the standard Cold Dark Matter (CDM) paradigm which proposes an alteration of Newton's laws of motion at low accelerations, characterized by a universal acceleration scale a_0. It attempts to explain observations of galactic rotation curves and predicts a specific scaling relation of the baryonic and total acceleration in galaxies, referred to as the Rotational Acceleration Relation (RAR), which can be equivalently formulated as a Mass Discrepancy Acceleration Relation (MDAR). The appearance of these relations in observational data such as SPARC has lead to investigations into the existence of similar relations in cosmological simulations using the standard ΛCDM model. Here, we report the existence of an RAR and MDAR similar to that predicted by MOND in ΛCDM using a large sample of galaxies extracted from a cosmological, hydrodynamical simulation (Magneticum). Furthermore, by using galaxies in Magneticum at different redshifts, a prediction for the evolution of the inferred acceleration parameter a_0 with cosmic time is derived by fitting a MOND force law to these galaxies. In Magneticum, the best fit for a_0 is found to increase by a factor of approximately 3 from redshift z = 0 to z = 2. This offers a powerful test from cosmological simulations to distinguish between MOND and ΛCDM observationally.