collaborators

7 papers

cond-mat.supr-con2026

Geometric superfluid stiffness of Kekulé superconductivity in magic-angle twisted bilayer graphene

Ke Wang, Qijin Chen, Rufus Boyack +1

Superconductivity in twisted graphene is probed by tunneling spectroscopy and superfluid stiffness, two observables that access the same order parameter from complementary perspect…

cond-mat.supr-con2026

Kekulé Superconductivity in Twisted Magic Angle Bilayer Graphene

Ke Wang, K. Levin

While it has been one of the most important new physics discoveries in the last decade, the nature of superconductivity in the twisted graphene family remains an unsolved problem.…

cond-mat.quant-gas2025

Tunable Molecular Interactions Near an Atomic Feshbach Resonance: Stability and Collapse of a Molecular Bose-Einstein Condensate

Zhiqiang Wang, Ke Wang, Zhendong Zhang +3

Understanding and controlling interactions of ultracold molecules is a cornerstone of quantum chemistry. While the laboratory creation of degenerate molecular gases comprised of bo…

cond-mat.quant-gas2025

Quench induced collective excitations: from breathing to acoustic modes

Shicong Song, Ke Wang, Zhengli Wu +3

In trapped Bose-Einstein condensates, interaction quenches which are abrupt changes of the interaction strength typically implemented via Feshbach tuning, are a practical and widel…

cond-mat.quant-gas2025

Universal coherent atom-molecule oscillations in the dynamics of the unitary Bose gas near a narrow Feshbach resonance

Ke Wang, Zhendong Zhang, Shu Nagata +2

Quench experiments on a unitary Bose gas around a broad Feshbach resonance have led to the discovery of universal dynamics. This universality is manifested in the measured atomic m…

cond-mat.supr-con2025

Non-Quantum-Critical Routes to Magnetic Superconductivity

Zhiqiang Wang, Ke Wang, K. Levin

Electronic superconductivity is most commonly understood to be associated with magnetic quantum criticality. This framework is natural when a quantum critical point is present belo…