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首页> 外文期刊>The Astrophysical journal >THE BOSS EMISSION-LINE LENS SURVEY. II. INVESTIGATING MASS-DENSITY PROFILE EVOLUTION IN THE SLACS+BELLS STRONG GRAVITATIONAL LENS SAMPLE*
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THE BOSS EMISSION-LINE LENS SURVEY. II. INVESTIGATING MASS-DENSITY PROFILE EVOLUTION IN THE SLACS+BELLS STRONG GRAVITATIONAL LENS SAMPLE*

机译:老板排放线镜头调查。二。研究SLACS + BELS强重力透镜样本中的质量密度分布演化*

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We present an analysis of the evolution of the central mass-density profile of massive elliptical galaxies from the SLACS and BELLS strong gravitational lens samples over the redshift interval z ≈ 0.1-0.6, based on the combination of strong-lensing aperture mass and stellar velocity-dispersion constraints. We find a significant trend toward steeper mass profiles (parameterized by the power-law density model with ρ∝r –γ) at later cosmic times, with magnitude d γ /dz = –0.60 ± 0.15. We show that the combined lens-galaxy sample is consistent with a non-evolving distribution of stellar velocity dispersions. Considering possible additional dependence of γ on lens-galaxy stellar mass, effective radius, and Sérsic index, we find marginal evidence for shallower mass profiles at higher masses and larger sizes, but with a significance that is subdominant to the redshift dependence. Using the results of published Monte Carlo simulations of spectroscopic lens surveys, we verify that our mass-profile evolution result cannot be explained by lensing selection biases as a function of redshift. Interpreted as a true evolutionary signal, our result suggests that major dry mergers involving off-axis trajectories play a significant role in the evolution of the average mass-density structure of massive early-type galaxies over the past 6?Gyr. We also consider an alternative non-evolutionary hypothesis based on variations in the strong-lensing measurement aperture with redshift, which would imply the detection of an "inflection zone" marking the transition between the baryon-dominated and dark-matter halo-dominated regions of the lens galaxies. Further observations of the combined SLACS+BELLS sample can constrain this picture more precisely, and enable a more detailed investigation of the multivariate dependences of galaxy mass structure across cosmic time.
机译:我们根据强透镜孔径质量和恒星速度的组合,对自红移间隔z≈0.1-0.6的SLACS和BELLS强引力透镜样本的大质量椭圆星系中心质量密度分布的演化进行了分析。 -分散约束。我们发现在后来的宇宙时间,陡峭的质量剖面(由ρ∝r –γ的幂律密度模型参数化)有一个明显的趋势,幅度d <γ> / dz = –0.60±0.15。我们显示,组合的透镜星系样本与恒星速度色散的非演化分布一致。考虑到<γ>可能对透镜星系恒星质量,有效半径和Sérsic指数的附加依赖关系,我们发现在较高质量和较大尺寸下质量分布较浅的边际证据,但其意义远大于对红移的依赖。使用已发布的光谱镜调查的蒙特卡洛模拟结果,我们验证了我们的质量轮廓演变结果无法通过作为红移的函数的透镜选择偏差来解释。解释为真实的进化信号,我们的结果表明,过去6?Gyr中,涉及轴外轨迹的重大干合并在大规模早期星系的平均质量密度结构的演化中起着重要作用。我们还考虑了基于具有红移的强透镜测量孔径的变化的另一种非进化假设,这将意味着检测到一个“拐点区”,该拐点标志着重子控制区和暗物质控制区之间的过渡。镜头星系。对SLACS + BELLS组合样本的进一步观察可以更精确地约束这张图片,并且可以更详细地研究整个宇宙时间内星系质量结构的多变量依赖性。
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