Incommensurate charge density wave on multiband intermetallic systems exhibiting competing orders
Nei Lopes, Daniel Reyes, Natanael C. Costa, Mucio A., Continentino, Christopher Thomas

TL;DR
This paper investigates the emergence of incommensurate charge density waves in multiband intermetallic systems with competing orders like CDW and superconductivity, using a simplified two-band model and numerical methods.
Contribution
It introduces a mean-field model for incommensurate CDW in multiband systems and explores how various parameters influence its formation and stability.
Findings
Incommensurate CDW appears at low temperatures and away from half-filling.
Large band depth differences can suppress CDW order.
The inCDW wave vector is identified as Q = (π, Q_y) or (Q_x, π).
Abstract
The appearance of an incommensurate charge density wave vector on multiband intermetallic systems presenting commensurate charge density wave (CDW) and superconductivity (SC) orders is investigated. We consider a two-band model in a square lattice, where the bands have distinct effective masses. The incommensurate CDW (inCDW) and CDW phases arise from an interband Coulomb repulsive interaction, while the SC emerges due to a local intraband attractive interaction. For simplicity, all the interactions, the order parameters and hybridization between bands are considered -independent. The multiband systems that we are interested are intermetallic systems with a -band coexisting with a large -band, for which a mean-field approach has proved suitable. We obtain the eigenvalues and eigenvectors of the Hamiltonian numerically and minimize the free…
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Taxonomy
TopicsIron-based superconductors research · Organic and Molecular Conductors Research · Advanced Chemical Physics Studies
