activity
20122015
most citedHubbard nanoclusters far from equilibrium

80 citations · 219 across the 5 of their papers we have counts for

collaborators

10 papers

cond-mat.quant-gas2015★ 63 cited

Ab initio transport results for strongly correlated fermions

N. Schlünzen, S. Hermanns, M. Bonitz +1

Quantum transport of strongly correlated fermions is of central interest in condensed matter physics. Here, we present first-principle nonequilibrium Green functions results using…

cond-mat.str-el2014★ 7 cited

Toward a Nonequilibrium Green functions approach to diffusion in strongly coupled finite quantum systems

M. Bonitz, N. Schluenzen, S. Hermanns

Transport properties of strongly correlated quantum systems are of central interest in condensed matter, ultracold atoms and in dense plasmas. There, the proper treatment of strong…

cond-mat.str-el2014★ 39 cited

Ultrafast dynamics of finite Hubbard clusters - a stochastic mean-field approach

Denis Lacroix, S. Hermanns, C. M. Hinz +1

Finite lattice models are a prototype for strongly correlated quantum systems and capture essential properties of condensed matter systems. With the dramatic progress in ultracold…

cond-mat.str-el2014★ 80 cited

Hubbard nanoclusters far from equilibrium

Sebastian Hermanns, Niclas Schlünzen, Michael Bonitz

The Hubbard model is a prototype for strongly correlated many-particle systems, including electrons in condensed matter and molecules, as well as for fermions or bosons in optical…

cond-mat.str-el2013

Dynamics of Hubbard nano-clusters following strong excitation

M. Bonitz, S. Hermanns, K. Balzer

The Hubbard model is a prototype for strongly correlated electrons in condensed matter, for molecules and fermions or bosons in optical lattices. While the equilibrium properties o…

cond-mat.str-el2012

Few-particle quantum dynamics---comparing Nonequilibrium Green's functions with the generalized Kadanoff-Baym ansatz to density operator theory

S. Hermanns, K. Balzer, M. Bonitz

The nonequilibrium description of quantum systems requires, for more than two or three particles, the use of a reduced description to be numerically tractable. Two possible approac…