Mixed-state additivity properties of magic monotones based on quantum relative entropies for single-qubit states and beyond
arXiv:2307.08258 · doi:10.22331/q-2024-10-04-1492
Abstract
We prove that the stabilizer fidelity is multiplicative for the tensor product of an arbitrary number of single-qubit states. We also show that the relative entropy of magic becomes additive if all the single-qubit states but one belong to a symmetry axis of the stabilizer octahedron. We extend the latter results to include all the - Rényi relative entropy of magic. This allows us to identify a continuous set of magic monotones that are additive for single-qubit states. We also show that all the monotones mentioned above are additive for several standard two and three-qubit states subject to depolarizing noise. Finally, we obtain closed-form expressions for several states and tighter lower bounds for the overhead of probabilistic one-shot magic state distillation.
v4: Fixed a missing exponent in Section 6, equation 44
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- Spectral signatures of nonstabilizerness and criticality in infinite matrix product states
- Symmetric channel verification for purifying noisy quantum channels