Area of research
Atomic and Molecular Physics, and Optics · Artificial Intelligence
Research interest
Research interests include Cold Atom Physics and Bose-Einstein Condensates, Quantum Information and Cryptography, Atomic and Subatomic Physics Research, and Quantum optics and atomic interactions.
Bottom-up approach to making larger hydrocarbon molecules capable of optical cycling
Toward liquid cell quantum sensing: Ytterbium complexes with ultranarrow absorption
Absorption-Emission Codes for Atomic and Molecular Quantum Information Platforms
Photoswitching Molecules Functionalized with Optical Cycling Centers Provide a Novel Platform for Studying Chemical Transformations in Ultracold Molecules
Quantum Error Correction with Metastable States of Trapped Ions Using Erasure Conversion
Functionalizing aromatic compounds with optical cycling centres
<i>omg</i> blueprint for trapped ion quantum computing with metastable states
Isomer-specific kinetics of the C <sup>+</sup> + H <sub>2</sub> O reaction at the temperature of interstellar clouds
High-fidelity manipulation of a qubit enabled by a manufactured nucleus
Dipolar quantum logic for freely rotating trapped molecular ions
Optical Control of Reactions between Water and Laser-Cooled Be<sup>+</sup> Ions
Methods, analysis, and the treatment of systematic errors for the electron electric dipole moment search in thorium monoxide
Rotation sensing with trapped ions
Coherent imaging spectroscopy of a quantum many-body spin system
Continuous all-optical deceleration and single-photon cooling of molecular beams
Order of Magnitude Smaller Limit on the Electric Dipole Moment of the Electron
Ultrafast Spin-Motion Entanglement and Interferometry with a Single Atom
Shot-noise-limited spin measurements in a pulsed molecular beam
Advanced cold molecule electron EDM