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Characterizing Featureless Mott Insulating State by Quasiparticle Interferences - A Dynamical Mean Field Theory Prospect

Strongly Correlated Electrons 2015-12-07 v3 Materials Science

Abstract

The quasiparticle interferences (QPIs) of a Mott insulator are investigated using the TT-matrix formalism implemented with the dynamical mean-field theory (TT-DMFT). In Mott insulating state, because DMFT predicts a singularity in the real part of the electron self energy Σ(ω)η/ω\Re \Sigma(\omega) \sim \eta/\omega at low frequency, where η\eta can be considered as the 'order parameter' for Mott insulating state, QPIs are completely washed out at the small bias voltage. However, a further analysis shows that Σ(ω)\Re \Sigma(\omega) in fact serves as an energy-dependent chemical potential shift. As a result, the effective bias voltage seen by the system is eV=eVΣ(eV)eV' = eV - \Re \Sigma(eV). Due to the singular behavior of Σ(ω)\Re \Sigma(\omega), a critical bias voltage eVc=ηeV_c = \sqrt{\eta} satisfying eV=0eV'=0 exists if and only if in Mott insulating state. Consequently, the same QPI patterns produced by the non-interacting Fermi surfaces appears at this critical bias voltage eVceV_c in Mott insulating state. We propose that this reentry of non-interacting QPI patterns at eVceV_c could serve as an experimental signature of Mott insulating state, and the 'order parameter' can be experimentally measured as η(eVc)2\eta \sim (eV_c)^2.

Keywords

Cite

@article{arxiv.1504.05214,
  title  = {Characterizing Featureless Mott Insulating State by Quasiparticle Interferences - A Dynamical Mean Field Theory Prospect},
  author = {Shantanu Mukherjee and Wei-Cheng Lee},
  journal= {arXiv preprint arXiv:1504.05214},
  year   = {2015}
}

Comments

5 pages, 3 figures, typos corrected, more references added

R2 v1 2026-06-22T09:19:20.205Z