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首页> 外文期刊>The Astrophysical journal >Lensperfect: Gravitational Lens Mass Map Reconstructions Yielding Exact Reproduction Of All Multiple Images
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Lensperfect: Gravitational Lens Mass Map Reconstructions Yielding Exact Reproduction Of All Multiple Images

机译:Lensperfect:引力透镜质量图重建可精确再现所有多个图像

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摘要

We present a new approach to gravitational lens mass map reconstruction. Our mass map solutions perfectly reproduce the positions, fluxes, and shears of all multiple images, and each mass map accurately recovers the underlying mass distribution to a resolution limited by the number of multiple images detected. We demonstrate our technique given a mock galaxy cluster similar to Abell 1689, which gravitationally lenses 19 mock background galaxies to produce 93 multiple images. We also explore cases in which as few as four multiple images are observed. Mass map solutions are never unique, and our method makes it possible to explore an extremely flexible range of physical (and unphysical) solutions, all of which perfectly reproduce the data given. Each reconfiguration of the source galaxies produces a new mass map solution. An optimization routine is provided to find those source positions (and redshifts, within uncertainties) that produce the "most physical" mass map solution, according to a new figure of merit developed here. Our method imposes no assumptions about the slope of the radial profile or mass following light. However, unlike "nonparametric" grid-based methods, the number of free parameters that we solve for is only as many as the number of observable constraints (or slightly greater if fluxes are constrained). For each set of source positions and redshifts, mass map solutions are obtained "instantly" via direct matrix inversion by smoothly interpolating the deflection field using a recently developed mathematical technique. Our LensPerfect software is straightforward and easy to use, and is publicly available on our Web site.
机译:我们提出了一种重力透镜质量图重建的新方法。我们的质量图解决方案完美地再现了所有多个图像的位置,通量和剪切力,并且每个质量图都能准确地将基础质量分布恢复到受检测到的多个图像数量限制的分辨率。我们演示了给定类似于Abell 1689的模拟银河星团的技术,该星团在重力作用下将19个模拟背景银河系镜头产生93张多重图像。我们还将探讨仅观察到四个多张图像的情况。质谱图解决方案从来都不是唯一的,我们的方法使探索物理(和非物理)解决方案范围极为灵活的方法成为可能,所有这些解决方案都能完美地再现给出的数据。每次重新配置源星系都会产生一个新的质量图解决方案。根据此处开发的新品质因数,提供了优化例程,以查找产生“最物理”质量图解决方案的源位置(以及不确定性内的红移)。我们的方法没有对径向轮廓的斜率或光线跟随的质量进行任何假设。但是,与“非参数”基于网格的方法不同,我们求解的自由参数的数量仅与可观察到的约束的数量一样多(如果限制通量,则稍微多一些)。对于每组源位置和红移,通过使用最新开发的数学技术通过平滑地内插偏转场,通过直接矩阵求逆“即时”获得质量图解。我们的LensPerfect软件简单易用,并且可以在我们的网站上公开获得。

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