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The optical ~(88)Sr lattice clocks and stabilized fibre links: a frequency reference for the VLBI system over a 15.5-km link and an absolute measurement of the clock transition over a 330-km link

机译:光学〜(88)SR晶格时钟和稳定光纤链路:VLBI系统的频率参考为15.5 km链路,在330 km链路上的时钟过渡的绝对测量

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We report a system of two independent strontium optical lattice standards with ~(88)Sr probed with a single shared ultra-narrow laser. We achieved frequency stability (frequency between two standards) of 7 × 10~(-17). The absolute frequency of the clock transition can be measured by the use of an optical frequency comb referenced to the UTC(AOS) and UTC(PL) via the 330-km stabilized fibre optic link of the OPTIME network. The 15.5-km stabilized fibre optic link between National Laboratory for Atomic, Molecular, and Optical Physics (KL FAMO) and Torun Centre for Astronomy made it possible to use the optical clocks as a frequency reference for the 32-metre precise parabolic antenna of the radio telescope in the Torun Centre for Astronomy participating in the VLBI networks. We report the world's first astronomical VLBI measurements referenced to an optical atomic clock.
机译:我们报告了一种具有〜(88)SR的两个独立锶光学晶格标准的系统,用单个共用超窄激光探测。我们实现了7×10〜(-17)的频率稳定性(两个标准之间的频率)。通过使用由光学网络的330 km稳定的光纤链路参考UTC(AOS)和UTC(PL)的光学频率梳,可以通过使用光学网络的330 km稳定光纤链路来测量时钟转换的绝对频率。国家实验室的15.5公里稳定的原子,分子和光学物理学(KL FAMO)和Torun中心的天文学中心使得可以使用光学时钟作为32米精确的抛物线天线的频率参考Radio Telescope在Torun Centr用于参与VLBI网络的天文学。我们报告了世界上第一个参考光学原子钟的天文VLBI测量。

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