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Entanglement Theory Quantum Correlations
Quantum Simulation
Quantum Foundations
Reversible Lifetime Semantics for Quantum Programs
arXiv
Authors: Simone Faro, Francesco Pio Marino, Gabriele Messina
Year
2026
Paper ID
30804
Status
Preprint
Abstract Read
~2 min
Abstract Words
155
Citations
N/A
Abstract
Reversible computation requires that intermediate data be explicitly undone rather than discarded. In quantum programming, this principle appears as uncomputation, usually treated as a technical cleanup mechanism. We instead present uncomputation as a semantic foundation. In the Qutes language, we introduce a formal model of Scope-Bounded Liveness-Guided Uncomputation, where lexical scope bounds variable lifetime and static liveness and entanglement analysis determine the earliest safe reclamation point. We define semantic lifetime and a Restoration Invariant ensuring that temporary quantum information disappears once it becomes semantically irrelevant. We prove compositional correctness under nested scopes and show that early reclamation can reduce circuit depth by avoiding critical-path overhead and can bound peak live qubits through disciplined ancilla reuse. Finally, we show that parameter passing semantics emerges from the same lifetime discipline, with pass-by-value and pass-by-reference corresponding to different lifetime boundaries, and we characterize the constraints (irreversibility, persistent entanglement, and aliasing) under which automatic uncomputation must be restricted.
Why This Paper Matters
- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
- It adds a 2026 reference point for readers tracking recent quantum research.
- Reversible computation requires that intermediate data be explicitly undone rather than discarded.
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