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From the 1 of 7 linked papers with an AI index.

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7 papers

cond-mat.quant-gas2026

Engineering SU()-Symmetric Hubbard Models with Microwave-Shielded Dipolar Molecules

Jing-Lun Li, Ragheed Alhyder, Andreas Schindewolf +3

The paper proposes a method to realize SU(N)-symmetric extended Hubbard models with ultracold polar molecules by using microwave shielding to tune on-site and off-site interactions…

cond-mat.quant-gas2026

Lellouch-Lüscher relation for ultracold few-atom systems under confinement

Jing-Lun Li, Paul S. Julienne, Johannes Hecker Denschlag +1

We derive an analog of the Lellouch-Lüscher (LL) relation for few-body bosonic systems, linking few-body scattering loss rates to the energies and widths of the corresponding harm…

physics.atom-ph2026

Steering reaction flux by coupling product channels

Dominik Dorer, Shinsuke Haze, Jing-Lun Li +5

We demonstrate a method for controlling the outcome of an ultracold chemical few-body reaction by redirecting a tunable fraction of reaction flux from one selected product channel…

cond-mat.quant-gas2025

Controlling few-body reaction pathways using a Feshbach resonance

Shinsuke Haze, Jinglun Li, Dominik Dorer +5

Gaining control over chemical reactions on the quantum level is a central goal of the modern field of cold and ultracold chemistry. Here, we demonstrate a novel method to coherentl…

physics.atom-ph2025

Spin structure of diatomic van der Waals molecules of alkali atoms

Jing-Lun Li, Paul S. Julienne, Johannes Hecker Denschlag +1

We theoretically investigate the spin structure of weakly bound diatomic van der Waals molecules formed by two identical bosonic alkali atoms. Our studies were performed using know…

physics.atom-ph2025

Spin hierarchy in van der Waals molecule formation via ultracold three-body recombination

Jing-Lun Li, Paul S. Julienne, Johannes Hecker Denschlag +1

We theoretically investigate the product-state distribution of weakly bound diatomic van der Waals molecules via ultracold three-body recombination of bosonic alkali atoms. We find…