collaborators

6 papers

quant-ph2025

Optimizing the dynamical preparation of quantum spin lakes on the ruby lattice

DinhDuy Vu, Dominik S. Kufel, Jack Kemp +3

Quantum spin liquids are elusive long-range entangled states. Motivated by experiments in Rydberg quantum simulators, recent excitement has centered on the possibility of dynamical…

quant-ph2025

Probing critical phenomena in open quantum systems using atom arrays

Fang Fang, Kenneth Wang, Vincent S. Liu +8

At continuous phase transitions, quantum many-body systems exhibit scale-invariance and complex, emergent universal behavior. Most strikingly, at a quantum critical point, correlat…

quant-ph2025

Approximately-symmetric neural networks for quantum spin liquids

Dominik S. Kufel, Jack Kemp, DinhDuy Vu +3

We propose and analyze a family of approximately-symmetric neural networks for quantum spin liquid problems. These tailored architectures are parameter-efficient, scalable, and sig…

quant-ph2025

Universality of Shallow Global Quenches in Critical Spin Chains

Julia Wei, Méabh Allen, Jack Kemp +4

Measuring universal data in the strongly correlated regime of quantum critical points remains a fundamental objective for quantum simulators. In foundational work, Calabrese and Ca…

quant-ph2025

Observation of topological prethermal strong zero modes

Feitong Jin, Si Jiang, Xuhao Zhu +42

Symmetry-protected topological phases cannot be described by any local order parameter and are beyond the conventional symmetry-breaking paradigm for understanding quantum matter.…

quant-ph2024

Floquet Flux Attachment in Cold Atomic Systems

Helia Kamal, Jack Kemp, Yin-Chen He +4

Flux attachment provides a powerful conceptual framework for understanding certain forms of topological order, including most notably the fractional quantum Hall effect. Despite it…