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physics.atom-ph2025

A high-stability optical clock based on a continuously ground-state cooled Al ion without compromising its accuracy

Fabian Dawel, Lennart Pelzer, Kai Dietze +12

Single ion optical clocks have shown systematic frequency uncertainties below , but typically require more than one week of averaging to achieve a corresponding statistic…

physics.atom-ph2025

Transportable strontium lattice clock with blackbody radiation shift uncertainty

I. Nosske, C. Vishwakarma, T. Lücke +6

We describe a transportable optical lattice clock based on the transition of lattice-trapped Sr atoms with a total systematic u…

physics.atom-ph2025

Entanglement-enhanced optical ion clock

Kai Dietze, Lennart Pelzer, Ludwig Krinner +11

Entangled states hold the promise of improving the precision and accuracy of quantum sensors. We experimentally demonstrate that spectroscopy of an optical clock transition using e…

physics.atom-ph2025

High-accuracy multi-ion spectroscopy with mixed-species Coulomb crystals

J. Keller, H. N. Hausser, I. M. Richter +14

Multi-ion optical clocks offer the possibility of overcoming the low signal-to-noise ratio of single-ion clocks, while still providing low systematic uncertainties. We present simu…

physics.atom-ph2025

In-Yb Coulomb crystal clock with systematic uncertainty

H. N. Hausser, J. Keller, T. Nordmann +17

We present a scalable mixed-species Coulomb crystal clock based on the transition in In. Yb ions are co-trapped and used f…