Graph explorer

Optical atomic clocks

In the last ten years extraordinary results in time and frequency metrology have been demonstrated. Frequency-stabilization techniques for continuous-wave lasers and femto-second optical frequency combs have enabled a rapid development of frequency standards based on optical transitions in ultra-cold neutral atoms and trapped ions. As a result, today's best performing atomic clocks tick at an optical rate and allow scientists to perform high-resolution measurements with a precision approaching a few parts in $10^{18}$. This paper reviews the history and the state of the art in optical-clock research and addresses the implementation of optical clocks in a possible future redefinition of the SI second as well as in tests of fundamental physics.

6 nodes5 linksoverview mapOptical atomic clocks
6 nodes5 links
Optical atomic clocks6 visible / 6 total nodes / 11 links
Co-authorshipCo-authorshipCo-authorshipCo-authorshipCo-authorshipCo-authorshipAuthorshipAuthorshipAuthorshipAuthorshipTopic signalWOptical atomic clockspreprint / 2014AN. PoliResearcherAC. W. OatesResearcherAP. GillResearcherAG. M. TinoResearcherTphysics.atom-ph2399 works
PaperSignal 105 links

Optical atomic clocks

preprint / 2014

Open