most citedFrequency Ratio Measurements with 18-digit Accuracy Using a Network of Optical Clocks

14 citations · 14 across the 1 of their papers we have counts for

collaborators

5 papers

physics.atom-ph202014 cited

Frequency Ratio Measurements with 18-digit Accuracy Using a Network of Optical Clocks

Boulder Atomic Clock Optical Network, Collaboration, : +35

Atomic clocks occupy a unique position in measurement science, exhibiting higher accuracy than any other measurement standard and underpinning six out of seven base units in the SI…

physics.optics2018

Measurement of the impact of turbulence anisoplanatism on precision free-space optical time transfer

W. C. Swann, M. I. Bodine, I. Khader +4

Future free-space optical clock networks will require optical links for time and frequency transfer. In many potential realizations of these networks, these links will extend over…

physics.ins-det2018

Femtosecond Optical Two-Way Time-Frequency Transfer in the Presence of Motion

Laura C. Sinclair, Hugo Bergeron, William C. Swann +5

Platform motion poses significant challenges to high-precision optical time and frequency transfer. We give a detailed description of these challenges and their solutions in comb-b…

physics.ins-det2018

Time Synchronization over a Free-Space Optical Communication Channel

Isaac Khader, Hugo Bergeron, Laura C. Sinclair +3

Free space optical (FSO) communication channels are typically used to transmit high-speed data between sites over the air. Here we repurpose an FSO digital communication system and…

astro-ph.GA2018

The evolution of the UV-to-mm extragalactic background light: evidence for a top-heavy initial mass function?

William. I. Cowley, Cedric G. Lacey, Carlton M. Baugh +3

We present predictions for the UV-to-mm extragalactic background light (EBL) from a recent version of the GALFORM semi-analytical model of galaxy formation which invokes a top-heav…