Beyond-QCA MPUs: generation, certification, and circuit synthesis

Vassallo, Marco (2026) Beyond-QCA MPUs: generation, certification, and circuit synthesis. [Laurea magistrale], Università di Bologna, Corso di Studio in Physics [LM-DM270]
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Abstract

Matrix Product Unitaries (MPUs) provide compact tensor-network representations of many-body quantum operations. MPU theory has been developed in the translationally invariant setting with periodic boundaries, where MPUs correspond, up to blocking, to one-dimensional quantum cellular automata (QCA) and are therefore characterized by a strict causal cone. Only recently, Styliaris et al. identified a broader class of open-boundary beyond-QCA MPUs that can generate long-range correlations while retaining the area-law operator entanglement characteristic of MPUs. Building on these developments, this thesis presents a framework for the generation, certification, and circuit synthesis of non-QCA MPUs. First, we develop the analytical and numerical tools needed to certify the validity of an input MPU and optimize the exact circuit decomposition algorithm introduced by Styliaris et al. These methods reduce both the asymptotic and finite-size costs of the decomposition. We then implement the complete procedure in the open-source library \textsc{TreeMPU}. We also present a theoretically motivated variational ansatz for approximating non-QCA MPUs with quantum circuits and benchmark its performance against the standard brickwall structure used for MPUs. The second main contribution is a systematic framework for generating MPUs. The local constraints guarantee global unitarity at arbitrary system size and define parameterized families capable of generating long-range correlations and beyond-QCA behavior. They reproduce known examples of non-QCA MPUs as special cases while enabling the random sampling of broader classes of unitary tensor networks. Finally, we assess the performance of the optimized exact decomposition, the variational compilation scheme, and the certified MPU generators developed in this thesis. Together, the certified generators and \textsc{TreeMPU} provide a systematic computational platform for constructing, benchmarking, and implementing beyond-QCA MPUs.

Abstract
Tipologia del documento
Tesi di laurea (Laurea magistrale)
Autore della tesi
Vassallo, Marco
Relatore della tesi
Correlatore della tesi
Scuola
Corso di studio
Indirizzo
THEORETICAL PHYSICS
Ordinamento Cds
DM270
Parole chiave
Matrix Product Unitaries,Tensor Networks,Quantum Information,Quantum Many-Body,Quantum Circuits,Quantum
Data di discussione della Tesi
24 Settembre 2026
URI

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