collaborators

8 papers

physics.atom-ph2026

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…

physics.atom-ph2026

Harnessing resonant dipolar interactions in a hybrid atom-molecule quantum system

Daniel K. Ruttley, Tom R. Hepworth, Juan M. García-Garrido +4

Hybrid quantum systems offer a route to combining the complementary strengths of distinct quantum platforms while mitigating their limitations. A particularly promising architectur…

cond-mat.quant-gas2026

Multi-state detection and spatial addressing in a microscope for ultracold molecules

Jonathan M. Mortlock, Adarsh P. Raghuram, Benjamin P. Maddox +2

Precise measurement of the particle number, spatial distribution and internal state is fundamental to all proposed experiments with ultracold molecules both in bulk gases and optic…

physics.atom-ph2026

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…

physics.atom-ph2026

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…

physics.atom-ph2025

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…