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Our research is aimed at understanding and manipulating structure, dynamics, and interactions of cold, highly symmetric molecules at the limit of individual quantum states to open up new possibilities in quantum science.

 

Traditional microwave or infrared laser spectroscopy is limited by restrictive selection rules, particularly in molecules with high symmetry. We develop non-linear laser spectroscopy techniques with high sensitivity, resolution, and frequency tunability to access the entire molecular state space for quantum information processing with molecular degrees of freedom, local field sensing, and more.

A) Rotational symmetries of C60. B) Effective rotational Hamiltonian of a single C60 molecule inferred from resolved infrared spectra in a gas phase thermal ensemble. Read more

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[8/17/2024] We are open for business! And we are hiring.