The Emptiness Problem for Quantum Finite Automata with Classical States

๐Ÿ“… 2026-08-29
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็ ”็ฉถไบ†้‡ๅญๆœ‰้™่‡ชๅŠจๆœบไธŽ็ปๅ…ธ็Šถๆ€(QFAC)็š„่กจ่พพ่ƒฝๅŠ›ๅ’Œ็ฉบ้›†้—ฎ้ข˜๏ผŒๆๅ‡บไบ†ไธ€็ง้ชŒ่ฏๅ•ๅพช็ŽฏQFAC้ž็ฉบๆ€ง็š„ๆ–นๆณ•ใ€‚
๐Ÿ“ Abstract
Quantum Finite Automata with Classical states (QFACs) are nondeterministic finite automata over a finite alphabet of quantum operations. We study expressiveness of this model on finite words and the corresponding emptiness problem. We show that regular languages are incomparable with those definable by Quantum Finite Automata (QFAs) and that both are strictly subsumed by QFAC-definable languages. We show that the emptiness problem for a QFAC can be reduced to the emptiness of the language intersection of a QFA and a finite automaton. This intersection is known to be decidable for strict thresholds but undecidable for non-strict cases. Furthermore, we consider the problem for flat QFACs, a restriction where the underlying automata contain no nested loops, and relate it to the higher-dimensional orbit problem, a long-standing open challenge in dynamical systems. Finally, we propose a sound and semi-complete witness searching procedure to verify the non-emptiness of one-loop QFACs, which are sufficiently expressive to represent some prominent quantum algorithms, such as Grover's search and quantum random walks.
Problem

Research questions and friction points this paper is trying to address.

Quantum Finite Automata
Classical States
Emptiness Problem
Expressiveness
Higher-dimensional Orbit Problem
Innovation

Methods, ideas, or system contributions that make the work stand out.

Quantum Finite Automata with Classical states
emptiness problem
language intersection
one-loop QFACs
witness searching procedure
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