arXiv · 1707.03722
Effects of Interactions on Dynamic Correlations of Hard-Core Bosons at Finite Temperatures
Abstract
We investigate how dynamic correlations of hard-core bosonic excitation at finite temperature are affected by additional interactions besides the hard-core repulsion which prevents them from occupying the same site. We focus especially on dimerized spin systems, where these additional interactions between the elementary excitations, triplons, lead to the formation of bound states, relevant for the correct description of scattering processes. In order to include these effects quantitatively we extend the previously developed Brückner approach to include also nearest-neighbor (NN) and next-nearest neighbor (NNN) interactions correctly in a low-temperature expansion. This leads to the extension of the scalar Bethe-Salpeter equation to a matrix-valued equation. Exemplarily, we consider the Heisenberg spin ladder to illustrate the significance of the additional interactions on the spectral functions at finite temperature which are proportional to inelastic neutron scattering rates.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Benedikt Fauseweh, Götz S. Uhrig. 2017-09-26. Effects of Interactions on Dynamic Correlations of Hard-Core Bosons at Finite Temperatures. https://doi.org/10.1103/physrevb.96.115150
Cite the original work for its findings. Save a collection to share your selection of sources.