Characterizing Featureless Mott Insulating State by Quasiparticle Interferences - A Dynamical Mean Field Theory Prospect
Abstract
The quasiparticle interferences (QPIs) of a Mott insulator are investigated using the -matrix formalism implemented with the dynamical mean-field theory (-DMFT). In Mott insulating state, because DMFT predicts a singularity in the real part of the electron self energy at low frequency, where 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 in fact serves as an energy-dependent chemical potential shift. As a result, the effective bias voltage seen by the system is . Due to the singular behavior of , a critical bias voltage satisfying 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 in Mott insulating state. We propose that this reentry of non-interacting QPI patterns at could serve as an experimental signature of Mott insulating state, and the 'order parameter' can be experimentally measured as .
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