From one-dimensional charge conserving superconductors to the gapless Haldane phase
Anna Keselman, Erez Berg, Patrick Azaria

TL;DR
This paper develops a framework for analyzing one-dimensional charge-conserving topological superconductors, revealing a gapless Haldane phase with protected edge modes for multiple fermion flavors, supported by analytical and numerical methods.
Contribution
It introduces a novel analysis of charge-conserving topological phases with multiple flavors, identifying a gapless Haldane phase with protected edge states, and connects it to known models like the Andrei-Destri model.
Findings
Existence of a gapless Haldane phase with localized edge modes for N>1
Phase diagram includes a first-order transition line between phases
Numerical confirmation of the topological edge states in the model
Abstract
We develop a framework to analyze one-dimensional topological superconductors with charge conservation. In particular, we consider models with flavors of fermions and symmetry, associated with the conservation of the fermionic parity of each flavor. For a single flavor, we recover the result that a distinct topological phase with exponentially localized zero modes does not exist due to absence of a gap to single particles in the bulk. For , however, we show that the ends of the system can host low-energy, exponentially-localized modes. The analysis can readily be generalized to systems in other symmetry classes. To illustrate these ideas, we focus on lattice models with symmetric interactions, and study the phase transition between the trivial and the topological gapless phases using bosonization and a weak-coupling renormalization group…
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Taxonomy
TopicsHigh-pressure geophysics and materials · Physics of Superconductivity and Magnetism · Inorganic Fluorides and Related Compounds
