Unitary Realizations of Synchronizing Automata in Quantum Systems

Fuente: arXiv
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Main Authors: Stempin, Jȩdrzej, Wójcik, Jan, Banaszak, Gabriela, Grudka, Andrzej, Karczewski, Marcin, Kurzyński, Paweł, Wójcik, Antoni
Format: Preprint
Published: 2026
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author Stempin, Jȩdrzej
Wójcik, Jan
Banaszak, Gabriela
Grudka, Andrzej
Karczewski, Marcin
Kurzyński, Paweł
Wójcik, Antoni
author_facet Stempin, Jȩdrzej
Wójcik, Jan
Banaszak, Gabriela
Grudka, Andrzej
Karczewski, Marcin
Kurzyński, Paweł
Wójcik, Antoni
contents We introduce a quantum analogue of a classical synchronizing automaton. In classical case the state of a system evolves according to a set of rules forming an alphabet, and sequences of these rules, called words, govern its evolution. Certain special words, known as synchronizing words, drive the automaton into a predetermined state regardless of its initial configuration. Although such an apparently irreversible process seems incompatible with the unitarity of quantum mechanics, we present a resetting protocol based on quantum synchronizing words by incorporating auxiliary qubits whose states encode the rules of the automaton's alphabet. These qubits interact with the quantum automaton, whose state is encoded in a qudit, via a global unitary operation. When the qubit register is initially prepared in a state corresponding to a synchronizing word, the automaton evolves into a predetermined pure state independent of its initial state, while the qubit register is transformed into a complex, often entangled, state that encodes information about the automaton's original configuration. The resulting entanglement depends on both the rule set and the automaton's initial state, and we show how specific entangled states can be generated within this framework.
format Preprint
id arxiv_https___arxiv_org_abs_2604_20432
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Unitary Realizations of Synchronizing Automata in Quantum Systems
Stempin, Jȩdrzej
Wójcik, Jan
Banaszak, Gabriela
Grudka, Andrzej
Karczewski, Marcin
Kurzyński, Paweł
Wójcik, Antoni
Quantum Physics
We introduce a quantum analogue of a classical synchronizing automaton. In classical case the state of a system evolves according to a set of rules forming an alphabet, and sequences of these rules, called words, govern its evolution. Certain special words, known as synchronizing words, drive the automaton into a predetermined state regardless of its initial configuration. Although such an apparently irreversible process seems incompatible with the unitarity of quantum mechanics, we present a resetting protocol based on quantum synchronizing words by incorporating auxiliary qubits whose states encode the rules of the automaton's alphabet. These qubits interact with the quantum automaton, whose state is encoded in a qudit, via a global unitary operation. When the qubit register is initially prepared in a state corresponding to a synchronizing word, the automaton evolves into a predetermined pure state independent of its initial state, while the qubit register is transformed into a complex, often entangled, state that encodes information about the automaton's original configuration. The resulting entanglement depends on both the rule set and the automaton's initial state, and we show how specific entangled states can be generated within this framework.
title Unitary Realizations of Synchronizing Automata in Quantum Systems
topic Quantum Physics
url https://arxiv.org/abs/2604.20432