论文标题
具有重力镜头重复快速无线电爆发的宇宙学
Cosmology with gravitationally lensed repeating Fast Radio Bursts
论文作者
论文摘要
高精度宇宙学探针已经揭示了用不同技术测量的参数之间的较小但显着的张力,其中有一个基于重力透镜的时间延迟。我们讨论了一种用于宇宙学的时间延迟的新方法,利用了镜头快速无线电爆发(FRB)的极端精度,这是源自宇宙学距离的无线电发射的简短闪光。使用连贯的方法,可实现的精度足以衡量时间延迟在几个月和几年中的变化方式,这也可以解释为图像之间的差异红移。事实证明,通过将时间延迟与时间导数相结合,可以消除由未知的引力镜头质量分布引起的不确定性。其他效果,最重要的是相对适当的运动,可以准确地测量并与宇宙学效应分开。通过模拟镜头的模拟样本,我们表明有可能对宇宙学参数产生强大的限制。最后,镜头图像可以用作银河干涉仪,以极高的分辨率解决突发源的结构和运动,并有助于揭示其物理性质,目前未知。
High-precision cosmological probes have revealed a small but significant tension between the parameters measured with different techniques, among which there is one based on time delays in gravitational lenses. We discuss a new way of using time delays for cosmology, taking advantage of the extreme precision expected for lensed fast radio bursts (FRBs), which are short flashes of radio emission originating at cosmological distances. With coherent methods, the achievable precision is sufficient for measuring how time delays change over the months and years, which can also be interpreted as differential redshifts between the images. It turns out that uncertainties arising from the unknown mass distribution of gravitational lenses can be eliminated by combining time delays with their time derivatives. Other effects, most importantly relative proper motions, can be measured accurately and disentangled from the cosmological effects. With a mock sample of simulated lenses, we show that it may be possible to attain strong constraints on cosmological parameters. Finally, the lensed images can be used as galactic interferometer to resolve structures and motions of the burst sources with incredibly high resolution and help reveal their physical nature, which is currently unknown.