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    Correlation-driven branch in doped excitonic insulators

    Tatsuya Kaneko1, Ryota Ueda1, and Satoshi Ejima2

    Phys. Rev. B 113, 165128 – Published 15 April, 2026

    DOI: https://doi.org/10.1103/nqsm-tyht

    Abstract

    We investigate the spectral properties of doped one-dimensional excitonic insulators. Employing matrix-product-state-based methods, we compute the single-particle spectrum and optical conductivity in a correlated two-band model. Our numerical calculation reveals the emergence of a correlation-driven in-gap branch in the doped state. The origin of the in-gap branch is examined by decomposing the propagation dynamics of a single particle, elucidating that the doping-induced branch is associated with excitonic correlations. Our demonstrations suggest that the doping-induced branch can serve as an indicator of electron-hole correlations.

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