视距速度投影对局部群质量测定的影响

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
David Benisty, David Mota
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引用次数: 0

摘要

本星系群(LG)的质量,包括银河系、仙女座星系(M31)和它们的卫星星系,对于验证星系形成和宇宙学模型至关重要。传统的病毒质量估计依赖于视线(LoS)速度和简化的落入假设,由于未观察到的速度分量和各向异性运动学,容易产生系统偏差。使用TNG宇宙学模拟,我们检查了两种极限情况:小的流入模型——忽略了垂直于LoS方向的速度——和大的流入模型——假设纯径向运动到质心(CoM)。我们的模拟表明,几何校正是至关重要的:小流入模型低估了真实质量,而大流入模型高估了它。通过将这些校准的修正应用于距离LG CoM 1 Mpc范围内观测到的矮星系运动学,我们得到了一个精确的LG质量MLG =(2.99±0.60)×1012 M⊙。这一发现解决了之前的差异,因为它与Λ冷暗物质模型、时间争论和独立质量估计的预测一致。我们的分析强调了修正速度各向异性的重要性,并为星系群的动态质量估计提供了一个强大的框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Line-of-sight velocity projection impact on Local Group mass determinations
The mass of the Local Group (LG), which includes the Milky Way, Andromeda (M31), and their satellites, is crucial for validating galaxy formation and cosmological models. Traditional virial mass estimates, which rely on line-of-sight (LoS) velocities and simplified infall assumptions, are prone to systematic biases due to unobserved velocity components and anisotropic kinematics. Using the TNG cosmological simulation, we examined two limiting cases: the minor infall model – which ignores velocities perpendicular to LoS directions – and the major infall model – which assumes purely radial motion toward the center of mass (CoM). Our simulations demonstrate that geometric corrections are vital: the minor infall model underestimates the true mass, while the major infall model overestimates it. By applying these calibrated corrections to observed dwarf galaxy kinematics within 1 Mpc of the LG’s CoM, we derived a refined LG mass of MLG = (2.99 ± 0.60)×1012M. This finding resolves previous discrepancies as it aligns with predictions from the Λ cold dark matter model, timing arguments, and independent mass estimates. Our analysis highlights the importance of correcting for velocity anisotropy and offers a robust framework for dynamical mass estimations of galaxy groups.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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