Polaronic correlations from optimized ancilla wave functions for the Fermi–Hubbard model
Abstract
We employ a family of ancilla qubit variational wave functions [Y.-H. Zhang and S. Sachdev, Phys. Rev. Res. 2 , 023172 (2020)] to describe the polaronic correlations in the pseudogap metal phase of a hole-doped 2D Fermi–Hubbard model. Comparison to ultracold atom quantum simulator data [J. Koepsell et al ., Science 374 , 82 (2021)] reveals both qualitative and quantitative agreement with the numerical analysis from half-filling up to 80% hole-doping, capturing the crossover from the polaronic regime to the Fermi liquid observed around 40% doping.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (4)
Tobias Müller
Lehrstuhl für Theoretische Physik I
Ronny Thomale
Lehrstuhl für Theoretische Physik I
Subir Sachdev
Yasir Iqbal
Department of Physics and Quantum Centre of Excellence for Diamond and Emergent Materials