论文标题

高兴:重力镜头和动力学,结合分析到高红移星系的特性

GLaD: Gravitational Lensing and Dynamics, combined analysis to unveil properties of high-redshift galaxies

论文作者

Chirivì, G., Yıldırım, A., Suyu, S. H., Halkola, A.

论文摘要

整体场单位(IFU)恒星运动学的动态建模是揭示当地宇宙中星系的动态结构和质量构建的强大工具,而引力镜头是自然界的宇宙望远镜,可以探索本地宇宙以外的星系的性质。我们提出了一种新的方法,该方法将星系的动态建模与强力透镜的放大功率统一,以重建高红移星系的结构和动力学特性。通过轴对称牛仔裤建模,我们假设表面亮度和表面质量密度曲线创建了源银河系的动力学模型。然后,我们预测源表面的亮度和运动学是在前景质量分布镜头时的样子,并与强烈引力透镜系统的模拟弧进行比较。为了演示目的,我们创建和分析了强镜头系统RX J1131-1231的模拟数据。通过对镜头和源进行建模,我们在5%的不确定性之内恢复了强烈镜头的高红移源的有效半径内的动力质量,并且我们提高了对镜头质量参数的约束,最多提高了50%。该机械特别适合从大型分段型望远镜(例如James Webb空间望远镜)中观察到的未来观察,这些望远镜将产生高灵敏度和角度分辨率IFU数据,以研究远处和微弱的星系。

Dynamical modelling of Integral-Field-Unit (IFU) stellar kinematics is a powerful tool to unveil the dynamical structure and mass build-up of galaxies in the local Universe, while gravitational lensing is nature's cosmic telescope to explore the properties of galaxies beyond the local Universe. We present a new approach which unifies dynamical modelling of galaxies with the magnification power of strong gravitational lensing, to reconstruct the structural and dynamical properties of high-redshift galaxies. By means of axisymmetric Jeans modelling, we create a dynamical model of the source galaxy, assuming a surface brightness and surface mass density profile. We then predict how the source's surface brightness and kinematics would look like when lensed by the foreground mass distribution and compare with the mock observed arcs of strong gravitational lensing systems. For demonstration purposes, we create and analyse mock data of the strong lensing system RX J1131-1231. By modelling both the lens and source, we recover the dynamical mass within the effective radius of strongly lensed high-redshift sources within 5% uncertainty, and we improve the constraints on the lens mass parameters by up to 50%. This machinery is particularly well suited for future observations from large segmented-mirror telescopes, such as the James Webb Space Telescope, that will yield high sensitivity and angular-resolution IFU data for studying distant and faint galaxies.

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