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The Hubble Constant from (CLASS) Gravitational Lenses

机译:(CLASS)引力透镜的哈勃常数

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One of the main objectives of the Cosmic Lens All-Sky Survey (CLASS) collaboration has been to find gravitational lens (GL) systems at radio wavelengths that are suitable for the determination of time delays between image pairs. The survey is now near completion and at least 18 GL systems have been found. Here, I will discuss our efforts to measure time delays from several of these systems with the ultimate aim of constraining the Hubble Constant (H0). Thus far three CLASS GL systems (B0218+357, B1600+434 and B1608+656) have yielded measurements of time delays, from which values of H0 a‰? 60a€“70 km sa?’1 Mpca?’1 have been estimated. Although most GL systems give similar values of H0, statistical and systematic uncertainties are still considerable. To reduce these uncertainties, I will mention two monitoring programs that we are undertaking to (re)measure time delays in 14 CLASS GL systems and address several important issues for the near future.
机译:宇宙透镜全天候测量(CLASS)合作的主要目标之一是找到适合确定图像对之间时间延迟的无线电波长的重力透镜(GL)系统。该调查现已接近完成,并且已找到至少18个GL系统。在这里,我将讨论为测量哈勃常数(H0)的最终目的而从这些系统中的几个系统测量时间延迟的努力。到目前为止,三个CLASS GL系统(B0218 + 357,B1600 + 434和B1608 + 656)已经得出了时间延迟的测量结果,从中得出H0≥?估计60a“ 70公里sa?’1 Mpca?’1。尽管大多数GL系统给出的H0值相似,但统计和系统的不确定性仍然很大。为了减少这些不确定性,我将提及我们正在执行的两个监视程序,用于(重新)测量14个CLASS GL系统中的时间延迟,并在不久的将来解决几个重要问题。

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