Direct imaging reveals nonlocal anticorrelations in the pair correlation function of 2D Fermi gases that are forbidden by BCS theory but confirmed by auxiliary-field QMC, plus a relation between two- and three-point correlations and agreement on Tan's Contact.
Title resolution pending
4 Pith papers cite this work. Polarity classification is still indexing.
representative citing papers
Kinetic frustration produces exact scars in hardcore boson and fermion Hubbard models that map to each other and are realizable on quantum simulators with tunable lifetimes via a new energy-distribution heuristic.
An optical superlattice architecture is proposed to implement the three-band Emery model with ultracold fermions, allowing simulation of cuprate-like band structure, interactions, and thermodynamics.
Constructive protocols prove that arbitrary fermionic quantum operations are achievable with global controls in optical lattice Fermi-Hubbard systems.
citing papers explorer
-
Observing Spatial Charge and Spin Correlations in a Strongly-Interacting Fermi Gas
Direct imaging reveals nonlocal anticorrelations in the pair correlation function of 2D Fermi gases that are forbidden by BCS theory but confirmed by auxiliary-field QMC, plus a relation between two- and three-point correlations and agreement on Tan's Contact.
-
Exact quantum scars from kinetic frustration for cross-platform realizations
Kinetic frustration produces exact scars in hardcore boson and fermion Hubbard models that map to each other and are realizable on quantum simulators with tunable lifetimes via a new energy-distribution heuristic.
-
Realizing multi-orbital Emery models with ultracold atoms
An optical superlattice architecture is proposed to implement the three-band Emery model with ultracold fermions, allowing simulation of cuprate-like band structure, interactions, and thermodynamics.
-
Programmable Fermionic Quantum Processors with Globally Controlled Lattices
Constructive protocols prove that arbitrary fermionic quantum operations are achievable with global controls in optical lattice Fermi-Hubbard systems.