46 papers
Observation of far-from-equilibrium scaling in the transient dynamics of 2D quantum magnets
Fabio Bensch, Umberto Borla, Federico Balducci +7
The transient regime of far-from-equilibrium quantum many-body dynamics lacks the established organizing principles that universality and scaling provide in equilibrium. It is leas…
Dynamic Induction of Lattice Gauge Theories on a Quantum Computer
Barbara Andrade, Declan Millar, Lewis Anderson +5
Gauge invariance is central to modern physics and underpins quantum simulations of lattice gauge theories (LGTs). Existing quantum simulation approaches employ Gauss's law either t…
Quantum Resources in Disorder-Free Localization Dynamics of Gauge Theories
Devendra Singh Bhakuni, Giovanni Cataldi, Jad C. Halimeh +1
Quantum-state complexity diagnostics provide valuable insight into many-body dynamics, information scrambling, and quantum computation. Here, we investigate the real-time dynamics…
Role of flavor degrees of freedom in quantum simulations of disorder-free localization
Yizhuo Tian, Jared Jeyaretnam, Tanmay Bhore +2
The authors examine how the number of internal flavor states (binary vs. multilevel) in a Z₂ lattice gauge theory influences disorder‑free localization, finding that two‑level diso…
Quantum Phase Diagram of the D Untruncated SU Lattice Gauge Theory with Dynamical Fermions
Gabriel Rouxinol, Julian Bender, Patrick Emonts +2
The paper uses a continuous-group variational Monte Carlo method without truncating the SU(2) gauge field to study the ground‑state phase diagram of a 2+1‑dimensional SU(2) lattice…
Neural quantum states for non-Abelian lattice gauge theories with dynamical fermions
Gabriel Rouxinol, Julian Bender, Michele Grossi +2
The paper introduces a neural-network based variational Monte Carlo method to study the ground state of continuous SU(2) lattice gauge theory with dynamical staggered fermions, pro…