Symmetry-protected topological phases of one-dimensional interacting fermions with spin-charge separation

Arianna Montorsi, Fabrizio Dolcini, Rita C. Iotti, and Fausto Rossi
Phys. Rev. B 95, 245108 – Published 6 June 2017

Abstract

The low energy behavior of a huge variety of one-dimensional interacting spinful fermionic systems exhibits spin-charge separation, described in the continuum limit by two sine-Gordon models decoupled in the charge and spin channels. Interaction is known to induce, besides the gapless Luttinger liquid phase, eight possible gapped phases, among which are the Mott, Haldane, charge-/spin-density, and bond-ordered wave insulators, and the Luther Emery liquid. Here we prove that some of these physically distinct phases have nontrivial topological properties, notably the presence of degenerate protected edge modes with fractionalized charge/spin. Moreover, we show that the eight gapped phases are in one-to-one correspondence with the symmetry-protected topological (SPT) phases classified by group cohomology theory in the presence of particle-hole symmetry P. The latter result is also exploited to characterize SPT phases by measurable nonlocal order parameters which follow the system evolution to the quantum phase transition. The implications on the appearance of exotic orders in the class of microscopic Hubbard Hamiltonians, possibly without P symmetry at higher energies, are discussed.

  • Received 25 October 2016
  • Revised 16 May 2017

DOI:https://doi.org/10.1103/PhysRevB.95.245108

©2017 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied PhysicsGeneral Physics

Authors & Affiliations

Arianna Montorsi1,*, Fabrizio Dolcini1,2, Rita C. Iotti1, and Fausto Rossi1

  • 1Institute for condensed matter physics and complex systems, DISAT, Politecnico di Torino, I-10129 Torino, Italy
  • 2CNR-SPIN, Monte S.Angelo - via Cinthia, I-80126 Napoli, Italy

  • *arianna.montorsi@polito.it

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Issue

Vol. 95, Iss. 24 — 15 June 2017

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