Multichannel Dyson equations for even- and odd-order Green's functions: Application to double excitations

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Abstract

Recently we proposed a multichannel Dyson equation, in which we coupled the one- and the three-body Green's functions, to model photoemission spectra. In this work we extend this concept to higher-order Green's functions and to other spectroscopies. We show the general structure of the equations and how one can systematically approximate the corresponding multichannel self-energy. As a particular case, we focus on the coupling of the two-body and the four-body Green's functions in the electron-hole channel to describe neutral excitations. This formulation allows for the description of important many-body effects, such as biexcitons, in a natural way. We illustrate our approach by applying it to a two-level model system, which, in a one-particle picture, exhibits single and double excitations. Our method can correctly describe both kinds of excitation, unlike standard approaches, and in good agreement with the exact results.

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Riva, G., Fischer, T., Paggi, S., Berger, J. A., & Romaniello, P. (2025). Multichannel Dyson equations for even- and odd-order Green’s functions: Application to double excitations. Physical Review B, 111(19). https://doi.org/10.1103/PhysRevB.111.195133

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