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The GW Compendium: A Practical Guide to Theoretical Photoemission Spectroscopy
The GW approximation in electronic structure theory has become a widespread tool for
predicting electronic excitations in chemical compounds and materials. In the realm of …
predicting electronic excitations in chemical compounds and materials. In the realm of …
Diagrammatic routes to nonlocal correlations beyond dynamical mean field theory
Strong electronic correlations pose one of the biggest challenges to solid state theory.
Recently developed methods that address this problem by starting with the local, eminently …
Recently developed methods that address this problem by starting with the local, eminently …
Tracking the footprints of spin fluctuations: A multimethod, multimessenger study of the two-dimensional Hubbard model
The Hubbard model represents the fundamental model for interacting quantum systems and
electronic correlations. Using the two-dimensional half-filled Hubbard model at weak …
electronic correlations. Using the two-dimensional half-filled Hubbard model at weak …
Dynamical phase transitions in the collisionless pre-thermal states of isolated quantum systems: theory and experiments
We overview the concept of dynamical phase transitions (DPTs) in isolated quantum
systems quenched out of equilibrium. We focus on non-equilibrium transitions characterized …
systems quenched out of equilibrium. We focus on non-equilibrium transitions characterized …
Boosting determinant quantum monte carlo with submatrix updates: Unveiling the phase diagram of the 3d hubbard model
F Sun, YX ** for on-site four-point correlation functions
By applying the Shiba map** on the two-particle level, we derive the relation between the
local four-point correlation functions of bipartite lattice models with on-site electronic …
local four-point correlation functions of bipartite lattice models with on-site electronic …
Multiloop functional renormalization group for general models
We present multiloop flow equations in the functional renormalization group (fRG)
framework for the four-point vertex and self-energy, formulated for a general fermionic many …
framework for the four-point vertex and self-energy, formulated for a general fermionic many …