Emergent Lorentz symmetry with vanishing velocity in a critical two-subband quantum wire
Strongly Correlated Electrons
2015-05-13 v2
Abstract
We consider a quantum wire with two subbands of spin-polarized electrons in the presence of strong interactions. We focus on the quantum phase transition when the second subband starts to get filled as a function of gate voltage. Performing a one-loop renormalization group (RG) analysis of the effective Hamiltonian, we identify the critical fixed-point theory as a conformal field theory having an enhanced SU(2) symmetry and central charge 3/2. While the fixed point is Lorentz invariant, the effective 'speed of light' nevertheless vanishes at low energies due to marginally irrelevant operators leading to a diverging critical specific heat coefficient.
Keywords
Cite
@article{arxiv.0811.4579,
title = {Emergent Lorentz symmetry with vanishing velocity in a critical two-subband quantum wire},
author = {M. Sitte and A. Rosch and J. S. Meyer and K. A. Matveev and M. Garst},
journal= {arXiv preprint arXiv:0811.4579},
year = {2015}
}
Comments
4 pages, 3 figures, minor changes, published version