activity
20112016
most citedDynamical Mean Field Approximation Applied to Quantum Field Theory

15 citations · 70 across the 13 of their papers we have counts for

collaborators

14 papers

hep-lat2016★ 9 cited

Sampling of General Correlators in Worm Algorithm-based Simulations

Tobias Rindlisbacher, Oscar Akerlund, Philippe de Forcrand

Using the complex -model as a prototype for a system which is simulated by a worm algorithm, we show that not only the charged correlator , but also more gener…

hep-lat2016★ 11 cited

Oscillating propagators in heavy-dense QCD

Oscar Akerlund, Philippe de Forcrand, Tobias Rindlisbacher

Using Monte Carlo simulations and extended mean field theory calculations we show that the -dimensional spin model with complex external fields has non-monotonic spatial c…

hep-lat2016★ 2 cited

Mean distribution approach to spin and gauge theories

Oscar Akerlund, Philippe de Forcrand

We formulate self-consistency equations for the distribution of links in spin models and of plaquettes in gauge theories. This improves upon known mean-field, mean-link, and mean-p…

hep-lat2016★ 1 cited

Aspects of topological actions on the lattice

Oscar Akerlund, Philippe de Forcrand

We consider a lattice action which forbids large fields, and which remains invariant under smooth deformations of the field. Such a "topological" action depends on one parameter, t…

hep-lat2015★ 2 cited

Effects of higher dimension operators on the Standard Model Higgs sector

Oscar Akerlund, Philippe de Forcrand, Jakob Steinbauer

We study the effect of higher dimension operators on the electroweak finite temperature phase transition in two sectors of the Standard Model. Firstly, the Higgs-Yukawa sector, con…

hep-lat2015★ 8 cited

Higgs-Yukawa model with higher dimension operators via extended mean field theory

Oscar Akerlund, Philippe de Forcrand

Using extended mean field theory (EMFT) on the lattice, we study properties of the Higgs-Yukawa model as an approximation of the standard model Higgs sector, and the effect of high…