From the 1 of 6 linked papers with an AI index.
6 papers
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…
Non-stabilizerness in kinetically-constrained Rydberg atom arrays
Ryan Smith, Zlatko PapiÄ, Andrew Hallam
Non-stabilizer states are a fundamental resource for universal quantum computation. However,despite broad significance in quantum computing, the emergence of "many-body" non-stabil…
Regularizing 3D conformal field theories via anyons on the fuzzy sphere
Cristian Voinea, Ruihua Fan, Nicolas Regnault +1
Recently introduced ''fuzzy sphere'' method has enabled accurate numerical regularizations of certain three-dimensional (3D) conformal field theories (CFTs). The regularization is…
Entanglement scaling and charge fluctuations in a Fermi liquid of composite fermions
Cristian Voinea, Songyang Pu, Ajit C. Balram +1
The composite fermion Fermi liquid (CFL) state at filling of a Landau level is a paradigmatic non-Fermi liquid borne out purely by Coulomb interactions. But in what ways i…
Hilbert space fragmentation at the origin of disorder-free localization in the lattice Schwinger model
Jared Jeyaretnam, Tanmay Bhore, Jesse J. Osborne +2
Lattice gauge theories, discretized cousins of continuum gauge theories arising in the Standard Model, have become important platforms for exploring non-equilibrium quantum phenome…
Stirring the false vacuum via interacting quantized bubbles on a 5564-qubit quantum annealer
Jaka Vodeb, Jean-Yves Desaules, Andrew Hallam +7
False vacuum decay is a potential mechanism governing the evolution of the early Universe, with profound connections to non-equilibrium quantum physics, including quenched dynamics…