论文标题

芒:星系群的扩展

MONG: An extension to galaxy clusters

论文作者

Rebecca, Louise, Kenath, Arun, Sivaram, C

论文摘要

虽然存在间接证据确立的暗物质的存在尚未直接观察到。运行几年的各种暗物质检测实验没有产生积极的结果。鉴于这些负面结果,我们以前提出了通过假设最小重力场强(最小曲率)和最小加速度来提出的替代模型。这些假设导致了经过修改的牛顿动力学和修改后的牛顿重力(MONG)。观察到的星系的平坦旋转曲线也通过这些假设来解释。在这里,我们将这些假设扩展到星系簇,并为典型的群集(例如处女座群集)建模动态速度距离曲线。也通过此模型获得了处女座簇中星系的径向速度。观察结果表明,在平均簇距离为17 MPC时,哈勃流动的不一致,这在高物质密度的区域预计。我们的修饰重力模型(MONG)预测了速度的这种下降。使用MONG获得的处女座聚类中星系的径向速度与距离关系与观测值一致。

The presence of dark matter, though well established by indirect evidence, is yet to be observed directly. Various dark matter detection experiments running for several years have yielded no positive results. In view of these negative results, we had earlier proposed alternate models by postulating a minimum gravitational field strength (minimum curvature) and a minimum acceleration. These postulates led to the modified Newtonian dynamics and modified Newtonian gravity (MONG). The observed flat rotation curves of galaxies were also accounted for through these postulates. Here we extend these postulates to galaxy clusters and model the dynamical velocity-distance curve for a typical cluster such as the Virgo cluster. The radial velocities of galaxies in the Virgo cluster are also obtained through this model. Observations show an inconsistency in the Hubble flow at a mean cluster distance of 17 Mpc, which is expected in regions of high matter density. This decrease in velocity is predicted by our model of modified gravity (MONG). The radial velocity versus distance relation for galaxies in the Virgo cluster obtained using MONG is in agreement with observations.

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