Enhanced quantum control of individual ultracold molecules using optical tweezer arrays

DK Ruttley, A Guttridge, TR Hepworth, SL Cornish - PRX Quantum, 2024 - APS
Control over the quantum states of individual molecules is crucial in the quest to harness
their rich internal structure and dipolar interactions for applications in quantum science. In …

An association sequence suitable for producing ground-state RbCs molecules in optical lattices

A Das, PD Gregory, T Takekoshi, L Fernley, M Landini… - SciPost Physics, 2023 - scipost.org
We identify a route for the production of $^{87} $ Rb $^{133} $ Cs molecules in the $ X^
1\Sigma^+ $ rovibronic ground state that is compatible with efficient mixing of the atoms in …

Coherent spin-1 dynamics encoded in the rotational states of ultracold molecules

TR Hepworth, DK Ruttley, F von Gierke… - arXiv preprint arXiv …, 2024 - arxiv.org
The rotational states of ultracold polar molecules possess long radiative lifetimes,
microwave-domain coupling, and tunable dipolar interactions. Coherent dynamics between …

Python Code for Rotational Energies and Boltzmann Population of Diatomic Molecules

J Singh, M Wazir, M Verma, H Verma - Resonance, 2024 - Springer
With the advancements in technology, several theoretical and experimental methods are
being developed to simplify the study of rotational spectra. Molecule-specific computational …

[PDF][PDF] Magic Wavelengths and Dipole-Dipole Interactions in Ultracold RbCs Molecules

L FERNLEY - 2024 - etheses.dur.ac.uk
The field of ultracold atomic research has exhibited exciting growth in recent decades,
ignited by the pioneering work of [1–3] at the turn of the millennium. Scientific minds around …

Control, Readout, and Entanglement of Molecular Qubits

LRB Picard - 2024 - search.proquest.com
Ultracold polar molecules possess a manifold of long-lived molecular rotational states,
which can be coherently controlled using microwave fields and entangled by the long-range …

[引用][C] A Hybrid Quantum System of Ultracold Polar Molecules and Rydberg Atoms

D RUTTLEY - 2024 - Durham University