arXiv · 2608.09578
Quantum Uncomputation of Clean and Dirty Ancilla Qubits
Abstract
Automatic uncomputation aims to provide programming-language-level support to facilitate the correct and safe use of ancilla qubits in quantum computing, but efforts have only been made for clean ancillas, leaving dirty ancillas unexplored. We present a unified formalization of the uncomputation of both clean and dirty ancillas. For the first time, we prove that checking the existence of uncomputation is coNP-hard. We introduce two complementary synthesis-oriented existence-checking methods: a rewrite-based normalization algorithm (RwUn) and a template-based reasoning system (TpUn) that guarantees uncomputation through structured Store-Use patterns. We implement prototypes of both methods in Qiskit and Python. Compared to the state-of-the-art Reqomp~\cite{reqomp}, RwUn achieves 100% coverage on practical complex-dependency benchmarks, twice the coverage on random classical circuits, and about 50% coverage on random quantum circuits beyond the scope of existing methods, demonstrating broader applicability.
Explore related subjects
Keep this discovery
Chenke Liu, Li Zhou, Boning Meng. 2026-08-10. Quantum Uncomputation of Clean and Dirty Ancilla Qubits. https://arxiv.org/abs/2608.09578
Cite the original work for its findings. Save a collection to share your selection of sources.