activity
20242026
collaborators

5 papers

cond-mat.str-el2026

Diagnosing phase transitions through time-scale entanglement

Stefan Rohshap, Hirone Ishida, Frederic Bippus +5

Spatial entanglement of quantum states has become a central paradigm of many-body physics. Here, we unearth a fundamentally different form of entanglement, the entanglement between…

cond-mat.str-el2026

Two-site entanglement in the two-dimensional Hubbard model

Frederic Bippus, Anna Kauch, Gergő Roósz +3

The study of entanglement in strongly correlated electron systems typically requires knowledge of the reduced density matrix. Here, we apply the parquet dynamical vertex approximat…

cond-mat.str-el2025

Entanglement across scales: Quantics tensor trains as a natural framework for renormalization

Stefan Rohshap, Jheng-Wei Li, Alena Lorenz +4

Understanding entanglement remains one of the most intriguing problems in physics. While particle and site entanglement have been studied extensively, the investigation of length o…

cond-mat.str-el2025

Entanglement in the pseudogap regime of cuprate superconductors

Frederic Bippus, Juraj Krsnik, Motoharu Kitatani +4

We find a strongly enhanced entanglement within the pseudogap regime of the Hubbard model. This entanglement is estimated from the quantum Fisher information and, avoiding the ill-…

cond-mat.other2024

Ladder equation for the three-particle vertex and its approximate solution

Patrick Kappl, Tin Ribic, Anna Kauch +1

We generalize the three two-particle Bethe-Salpeter equations to ten three-particle ladders. These equations are exact and yield the exact three-particle vertex, if we knew the thr…