Exact downfolding and its perturbative approximation

Profe JB, Vučičević J, Stavropoulos PP, Rösner M, Valenti R, Klebl L (2026)
Physical Review Research 8(2): 023091.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Profe, Jonas B.; Vučičević, Jakša; Stavropoulos, P. Peter; Rösner, MalteUniBi; Valenti, Roser; Klebl, Lennart
Abstract / Bemerkung
Solving the many-electron problem, even approximately, is one of the most challenging and simultaneously most important problems in contemporary condensed matter physics with various connections to other fields. The standard approach is to follow a divide and conquer strategy that combines various numerical and analytical techniques. A crucial step in this strategy is the derivation of an effective model for a subset of degrees of freedom by a procedure called downfolding, which often corresponds to integrating out energy scales far away from the Fermi level. In this work, we present a rigorous formulation of this downfolding procedure, which complements the renormalization group picture put forward by Honerkamp [Phys. Rev. B 85, 195129 (2012)]. We derive an exact effective model in an arbitrarily chosen target space (e.g., low-energy degrees of freedom) by explicitly integrating out the rest space (e.g., high-energy degrees of freedom). Within this formalism, we state conditions that justify a perturbative truncation of the downfolded effective interactions to just a few low-order terms. Furthermore, we utilize the exact formalism to formally derive the widely used constrained random phase approximation, uncovering underlying approximations and highlighting relevant corrections in the process. Finally, we detail different contributions in the material examples of fcc nickel and the infinite-layer cuprate SrCuO2. Our results open up a pathway to obtain effective models in a controlled fashion and to judge whether a chosen target space is suitable.
Erscheinungsjahr
2026
Zeitschriftentitel
Physical Review Research
Band
8
Ausgabe
2
Art.-Nr.
023091
eISSN
2643-1564
Page URI
https://pub.uni-bielefeld.de/record/3016989

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Profe JB, Vučičević J, Stavropoulos PP, Rösner M, Valenti R, Klebl L. Exact downfolding and its perturbative approximation. Physical Review Research . 2026;8(2): 023091.
Profe, J. B., Vučičević, J., Stavropoulos, P. P., Rösner, M., Valenti, R., & Klebl, L. (2026). Exact downfolding and its perturbative approximation. Physical Review Research , 8(2), 023091. https://doi.org/10.1103/npv1-w4gt
Profe, Jonas B., Vučičević, Jakša, Stavropoulos, P. Peter, Rösner, Malte, Valenti, Roser, and Klebl, Lennart. 2026. “Exact downfolding and its perturbative approximation”. Physical Review Research 8 (2): 023091.
Profe, J. B., Vučičević, J., Stavropoulos, P. P., Rösner, M., Valenti, R., and Klebl, L. (2026). Exact downfolding and its perturbative approximation. Physical Review Research 8:023091.
Profe, J.B., et al., 2026. Exact downfolding and its perturbative approximation. Physical Review Research , 8(2): 023091.
J.B. Profe, et al., “Exact downfolding and its perturbative approximation”, Physical Review Research , vol. 8, 2026, : 023091.
Profe, J.B., Vučičević, J., Stavropoulos, P.P., Rösner, M., Valenti, R., Klebl, L.: Exact downfolding and its perturbative approximation. Physical Review Research . 8, : 023091 (2026).
Profe, Jonas B., Vučičević, Jakša, Stavropoulos, P. Peter, Rösner, Malte, Valenti, Roser, and Klebl, Lennart. “Exact downfolding and its perturbative approximation”. Physical Review Research 8.2 (2026): 023091.
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