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Regensburg 2025 – wissenschaftliches Programm

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DY: Fachverband Dynamik und Statistische Physik

DY 13: Many-body Quantum Dynamics I (joint session DY/TT)

DY 13.8: Vortrag

Dienstag, 18. März 2025, 11:30–11:45, H37

Generalized dual-unitary circuits from biunitarity — •Michael A. Rampp, Suhail A. Rather, and Pieter W. Claeys — Max-Planck-Institut für Physik komplexer Systeme, Dresden

We present a general framework for constructing solvable lattice models of chaotic many-body quantum dynamics with multiple unitary directions using biunitary connections. We show that a network of biunitary connections on the Kagome lattice naturally defines a multi-unitary circuit, where three `arrows of time' directly reflect the lattice symmetry. These models unify various constructions of hierarchical dual-unitary and triunitary gates and present new families of models with solvable correlations and entanglement dynamics. Using multilayer constructions of biunitary connections, we additionally introduce multilayer circuits with monoclinic symmetry and higher level hierarchical dual-unitary solvability and discuss their (non-)ergodicity. Our work demonstrates how different classes of solvable models can be understood as arising from different geometric structures in spacetime.

Keywords: Quantum circuits; Thermalization; Dual-unitary circuits; Entanglement; Exact solutions for many-body systems

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