activity
20162024
most citedTunable itinerant spin dynamics with polar molecules

72 citations · 135 across the 5 of their papers we have counts for

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Showing cond-mat.quant-gasShow all

7 papers · 1 filter

cond-mat.quant-gas2022★ 72 cited

Tunable itinerant spin dynamics with polar molecules

Jun-Ru Li, Kyle Matsuda, Calder Miller +4

Strongly interacting spins underlie many intriguing phenomena and applications ranging from magnetism to quantum information processing. Interacting spins combined with motion disp…

cond-mat.quant-gas2021★ 47 cited

Reactions Between Layer-Resolved Molecules Mediated by Dipolar Exchange

William G. Tobias, Kyle Matsuda, Jun-Ru Li +5

Microscopic control over polar molecules with tunable interactions would enable realization of novel quantum phenomena. Using an applied electric field gradient, we demonstrate lay…

cond-mat.quant-gas2021

Tuning of dipolar interactions and evaporative cooling in a three-dimensional molecular quantum gas

Jun-Ru Li, William G. Tobias, Kyle Matsuda +8

Ultracold polar molecules possess long-range, anisotropic, and tunable dipolar interactions, providing the opportunities to probe quantum phenomena inaccessible with existing cold…

cond-mat.quant-gas2020

Resonant collisional shielding of reactive molecules using electric fields

Kyle Matsuda, Luigi De Marco, Jun-Ru Li +4

Full control of molecular interactions, including reactive losses, would open new frontiers in quantum science. Here, we demonstrate extreme tunability of chemical reaction rates b…

cond-mat.quant-gas2020

Dipolar evaporation of reactive molecules to below the Fermi temperature

Giacomo Valtolina, Kyle Matsuda, William G. Tobias +3

Molecules are the building blocks of matter and their control is key to the investigation of new quantum phases, where rich degrees of freedom can be used to encode information and…

cond-mat.quant-gas2020

Quantum Many-Body Physics with Ultracold Polar Molecules: Nanostructured Potential Barriers and Interactions

Andreas Kruckenhauser, Lukas M. Sieberer, William G. Tobias +8

We design dipolar quantum many-body Hamiltonians that will facilitate the realization of exotic quantum phases under current experimental conditions achieved for polar molecules. T…