论文标题
立方galileon重力中的无效镜头
Void Lensing in Cubic Galileon Gravity
论文作者
论文摘要
通过宇宙空隙的弱透镜研究是一种有希望的改性重力探针(MG)。在弱透镜研究中,过量的表面质量密度(ESD)被广泛用作镜头统计。在本文中,我们使用射线追踪方法研究基于立方体加利昂(CG)重力的模拟中的空隙周围的ESD。通过汇编N体模拟和射线追踪方法,可以考虑由Mg产生的结构形成和偏转角的变化,从而使镜头信号的提取更现实。我们发现CG重力的ESD的测量和理论预测之间的良好协议。同时,与结构形成的变化相比,透镜信号受到偏转角变化的影响要小得多,这表明与3D暗物质密度电场的投影相比,关于ESD(统计)的良好近似值。最后,我们证明,由于大型调查区域和星系数密度的增加,在下一代调查中,不可能在模拟中区分CG和一般相对论,从而检测这两个模型之间的差异。本文中使用的方法结合了N体模拟和射线追踪方法,可以是一种从基于MGS的模拟中测量透镜信号的强大方法,尤其是在显着修改偏转角的模拟中。
Weak lensing studies via cosmic voids are a promising probe of Modified Gravity (MG). Excess surface mass density (ESD) is widely used as a lensing statistic in weak lensing research. In this paper, we use the ray-tracing method to study the ESD around voids in simulations based on Cubic Galileon (CG) gravity. With the compilation of N-body simulation and ray-tracing method, changes in structure formation and deflection angle resulting from MG can both be considered, making the extraction of lensing signals more realistic. We find good agreements between the measurement and theoretical prediction of ESD for CG gravity. Meanwhile, the lensing signals are much less affected by the change of the deflection angle than the change of the structure formation, indicating a good approximation of regarding ESD (statistics) as the projection of 3D dark matter density field. Finally, we demonstrate that it is impossible to distinguish CG and General Relativity in our simulation, however, in the next-generation survey, thanks to the large survey area and the increased galaxy number density, detecting the differences between these two models is possible. The methodology employed in this paper that combines N-body simulation and ray-tracing method can be a robust way to measure the lensing signals from simulations based on the MGs, and especially on that which significantly modifies the deflection angle.