most citedA microscopic, non-equilibrium, statistical field theory for cosmic structure formation

43 citations · 45 across the 4 of their papers we have counts for

collaborators

5 papers

cond-mat.stat-mech2014

Non-equilibrium statistical field theory for classical particles: Initially correlated grand canonical ensembles

Felix Fabis, Daniel Berg, Elena Kozlikin +1

It was recently shown by Bartelmann et al. how correlated initial conditions can be introduced into the statistical field theory for classical particles pioneered by Das and Mazenk…

astro-ph.CO2014★ 1 cited

Non-equilibrium statistical field theory for classical particles: Non-linear structure evolution with first-order interaction

Matthias Bartelmann, Felix Fabis, Daniel Berg +3

We calculate the power spectrum of density fluctuations in the statistical non-equilibrium field theory for classical, microscopic degrees of freedom to first order in the interact…

astro-ph.CO2014★ 1 cited

Non-equilibrium statistical field theory for classical particles: Linear and mildly non-linear evolution of cosmological density power spectra

Matthias Bartelmann, Felix Fabis, Daniel Berg +3

We use the non-equlibrium statistical field theory for classical particles, recently developed by Mazenko and Das and Mazenko, together with the free generating functional we have…

cond-mat.stat-mech2014★ 43 cited

A microscopic, non-equilibrium, statistical field theory for cosmic structure formation

Matthias Bartelmann, Felix Fabis, Daniel Berg +3

Building upon the recent pioneering work by Mazenko and by Das and Mazenko, we develop a microscopic, non-equilibrium, statistical field theory for initially correlated canonical e…

astro-ph1994

Is Compton scattering in strong magnetic fields really infrared divergent?

M. Kachelriess, D. Berg, G. Wunner

The infrared behavior of QED changes drastically in the presence of a strong magnetic field: the electron self-energy and the vertex function are infrared {\em finite}, in contrast…