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Precise Measurements of the Speed of Light with High-redshift Quasars: Ultra-compact Radio Structure and Strong Gravitational Lensing

机译:精确测量光速速度高射频量:超紧凑的无线电结构和强大的重力透镜

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Although the speed of light has been measured with very high precision, most of these measurements were carried out on Earth or in our close cosmic surroundings. In this Letter, we propose an original idea to combine the observations of ultra-compact structure in radio quasars and strong gravitational lensing with quasars acting as background sources to estimate the speed of light. The method will provide precise measurements of the speed of light using extragalactic objects at different redshifts. We evaluate if current or future missions such as the Large Synoptic Survey Telescope (LSST) and Dark Energy Survey (DES) can be sensitive enough to detect any variation of c. Our results show that strongly lensed quasars observed by LSST would produce robust constraints on Delta c/c at the level of 10(-4), if the compact radio structure measurements are available.
机译:虽然光速已经以非常高的精度测量,但大多数这些测量都在地球上或在我们的密切宇宙周围进行。 在这封信中,我们提出了一个原创的想法,将超紧凑结构的观察结合在无线电额征中,并用Quasars作用作为背景来源来估计光速。 该方法将在不同红移处使用紫外物体提供光速的精确测量。 我们评估如果当前或未来的任务如大型舞台调查望远镜(LSST)和暗能量调查(DES)可以足够敏感以检测C的任何变化。 我们的研究结果表明,如果可以使用紧凑的无线电结构测量,LSST的透镜在10(-4)水平上会对ΔC/ C产生强大的约束。

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