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Experiments with interacting ultracold polar molecules
Philip D. Gregory, Jonathan M. Mortlock, Daniel K. Ruttley +1
Ultracold polar molecules have emerged as an exciting platform for experiments in quantum science, with many proposed applications seeking to leverage the existence of long-range d…
Probing topological edge states in a molecular synthetic dimension
Adarsh P. Raghuram, Francesca M. Blondell, Jonathan M. Mortlock +7
Engineering synthetic dimensions, where the physics of additional spatial dimensions is simulated within the internal states of a quantum system, allows the realisation of phenomen…
Hyperfine-resolved optical spectroscopy of ultracold RbCs molecules: the metastable state
Arpita Das, Albert Li Tao, Luke M. Fernley +6
Using an ultracold gas of RbCs molecules, we perform hyperfine-resolved spectroscopy of transitions from the vibronic ground state to the lowest rovibrational states…
Isolated quantum-state networks in ultracold molecules
Tom R. Hepworth, Simon L. Cornish, Philip D. Gregory
Precise control over rotational angular momentum is at the heart of recent advances in quantum chemistry, quantum simulation, and quantum computation with ultracold bialkali molecu…
Long-lived multilevel coherences and spin-1 dynamics encoded in the rotational states of ultracold molecules
Tom R. Hepworth, Daniel K. Ruttley, Fritz von Gierke +3
Rotational states of ultracold polar molecules possess long radiative lifetimes, microwave-domain coupling, and tunable dipolar interactions. The availability of numerous rotationa…