most citedLong term measurement of the Sr clock frequency at the limit of primary Cs clocks

61 citations · 78 across the 2 of their papers we have counts for

collaborators

6 papers

physics.atom-ph202061 cited

Long term measurement of the Sr clock frequency at the limit of primary Cs clocks

R. Schwarz, S. Dörscher, A. Al-Masoudi +7

We report on a series of 42 measurements of the transition frequency of the 429~THz (5s)~S--(5s5p)~P line in Sr taken over three years from 2017 to 2019.…

physics.ins-det2019

Direct comparisons of European primary and secondary frequency standards via satellite techniques

F. Riedel, A. Al-Masoudi, E. Benkler +46

We carried out a 26-day comparison of five simultaneously operated optical clocks and six atomic fountain clocks located at INRIM, LNE-SYRTE, NPL and PTB by using two satellite-bas…

physics.optics2019

End-to-end topology for fiber comb based optical frequency transfer at the level

Erik Benkler, Burghard Lipphardt, Thomas Puppe +3

We introduce a simple and robust scheme for optical frequency transfer of an ultra-stable source light field via an optical frequency comb to a field at a target optical frequency,…

astro-ph.CO2019

Search for transient variations of the fine structure constant and dark matter using fiber-linked optical atomic clocks

B. M. Roberts, P. Delva, A. Al-Masoudi +51

We search for transient variations of the fine structure constant using data from a European network of fiber-linked optical atomic clocks. By searching for coherent variations in…

physics.atom-ph2019

Guidelines for developing optical clocks with fractional frequency uncertainty

Moustafa Abdel-Hafiz, Piotr Ablewski, Ali Al-Masoudi +42

There has been tremendous progress in the performance of optical frequency standards since the first proposals to carry out precision spectroscopy on trapped, single ions in the 19…

physics.optics201917 cited

946-nm Nd:YAG digital-locked laser at in 1 s and transfer-locked to a cryogenic silicon cavity

A. Didier, S. Ignatovich, E. Benkler +2

We present a Nd:YAG ultra-stable laser system operating at 946 nm and demonstrate a fractional frequency instability of at 1 s by pre-stabilizing it to a 30 cm-…