English

Quantum fidelity for one-dimensional Dirac fermions and two-dimensional Kitaev model in the thermodynamic limit

Statistical Mechanics 2012-01-04 v2 Quantum Physics

Abstract

We study the scaling behavior of the fidelity (FF) in the thermodynamic limit using the examples of a system of Dirac fermions in one dimension and the Kitaev model on a honeycomb lattice. We show that the thermodynamic fidelity inside the gapless as well as gapped phases follow power-law scalings, with the power given by some of the critical exponents of the system. The generic scaling forms of FF for an anisotropic quantum critical point for both thermodynamic and non-thermodynamic limits have been derived and verified for the Kitaev model. The interesting scaling behavior of FF inside the gapless phase of the Kitaev model is also discussed. Finally, we consider a rotation of each spin in the Kitaev model around the z axis and calculate FF through the overlap between the ground states for angle of rotation η\eta and η+dη\eta+d\eta, respectively. We thereby show that the associated geometric phase vanishes. We have supplemented our analytical calculations with numerical simulations wherever necessary.

Keywords

Cite

@article{arxiv.1108.2597,
  title  = {Quantum fidelity for one-dimensional Dirac fermions and two-dimensional Kitaev model in the thermodynamic limit},
  author = {Victor Mukherjee and Amit Dutta and Diptiman Sen},
  journal= {arXiv preprint arXiv:1108.2597},
  year   = {2012}
}

Comments

10 pages, 8 figures