activity
20242026
collaborators

6 papers

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…

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…

physics.atom-ph2025

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…

physics.atom-ph2025

Individual assembly of two-species Rydberg molecules using optical tweezers

Alexander Guttridge, Tom R. Hepworth, Daniel K. Ruttley +3

We present a new approach to investigating Rydberg molecules by demonstrating the formation and characterization of individual RbCs Rydberg molecules using optical tweezers.…

physics.atom-ph2024

Long-lived entanglement of molecules in magic-wavelength optical tweezers

Daniel K. Ruttley, Tom R. Hepworth, Alexander Guttridge +1

Realising quantum control and entanglement of particles is crucial for advancing both quantum technologies and fundamental science. Significant developments in this domain have bee…

quant-ph2024

Enhanced quantum state transfer via feedforward cancellation of optical phase noise

Benjamin P. Maddox, Jonathan M. Mortlock, Tom R. Hepworth +4

Many experimental platforms for quantum science depend on state control via laser fields. Frequently, however, the control fidelity is limited by optical phase noise. This is exace…