Published November 2015 | Version v1
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Thermal evolution of the one-flavour Schwinger model using matrix product states

  • 1. DESY Zeuthen (Germany). John von Neumann Institute for Computing
  • 2. Max-Planck Institute of Quantum Optics, Garching (Germany)
  • 3. Poznan Univ. (Poland). Faculty of Physics
  • 4. Frankfurt am Main Univ. (Germany). Inst. fuer Theoretische Physik

Description

The Schwinger model, or 1+1 dimensional QED, offers an interesting object of study, both at zero and non-zero temperature, because of its similarities to QCD. In this proceeding, we present the a full calculation of the temperature dependent chiral condensate of this model in the continuum limit using Matrix Product States (MPS). MPS methods, in general tensor networks, constitute a very promising technique for the non-perturbative study of Hamiltonian quantum systems. In the last few years, they have shown their suitability as ansatzes for ground states and low-lying excitations of lattice gauge theories. We show the feasibility of the approach also for finite temperature, both in the massless and in the massive case.

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Additional details

Publishing Information

Imprint Pagination
7 p.
ISSN
0418-9833
Report number
DESY--15-202

Conference

Title
33. International symposium on lattice field theory
Dates
14-18 Jul 2015
Place
Kobe (Japan)