Optimal Entanglement Recovery from Environmental Measurements

AbstractWe solve the Gregoratti–Werner optimization over environmental measurements exactly for the four-label dephasing example of Buscemi, Chiribella and D’Ariano [Phys. Rev. Lett. 95, 090501 (2005)]. The optimal deterministic entanglement fidelity under environmental measurement is cos2 (π/16), whereas coherent access permits unit fidelity. An attaining projective measurement and analytic operator certificate establish optimality over all finite POVMs. Varying one environmental state gives a family whose measurement optimization reduces to a one-dimensional concave envelope. Writing c = cos(θ/2), we prove exact projective-basis optimality throughout 0.85 ≤ c ≤ 1 and √ 1/ 2 ≤ c ≤ 0.728, using analytic contact bounds and uniform rational certificates. Inside the intervening region, a three-outcome measurement has exact optimum 153/160 at c = 3/4, with a strict, exactly quantified advantage over every projective basis. At c = 4/5, a certified four-outcome protocol exceeds every projective-simulable measurement on the environmental qubit by more than 0.00499536. The optimized measurement loss is nonmonotone. We also obtain an exact phase-only optimum for a related four-label problem and constructive correlation-matrix recovery formulas for mixed states with partial environmental access, relating the latter to conditional min-entropy and robustness of asymmetry.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-15
DOI
https://doi.org/10.5281/zenodo.22778677
Primary Topic
Quantum Information and Cryptography
Type
article
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Optimal Entanglement Recovery from Environmental Measurements

Danny Wall
Zenodo (CERN European Organization for Nuclear Research)
Quantum Information and Cryptography
article

Optimal Entanglement Recovery from Environmental Measurements

Danny Wall
article en

Abstract

AbstractWe solve the Gregoratti–Werner optimization over environmental measurements exactly for the four-label dephasing example of Buscemi, Chiribella and D’Ariano [Phys. Rev. Lett. 95, 090501 (2005)]. The optimal deterministic entanglement fidelity under environmental measurement is cos2 (π/16), whereas coherent access permits unit fidelity. An attaining projective measurement and analytic operator certificate establish optimality over all finite POVMs. Varying one environmental state gives a family whose measurement optimization reduces to a one-dimensional concave envelope. Writing c = cos(θ/2), we prove exact projective-basis optimality throughout 0.85 ≤ c ≤ 1 and √ 1/ 2 ≤ c ≤ 0.728, using analytic contact bounds and uniform rational certificates. Inside the intervening region, a three-outcome measurement has exact optimum 153/160 at c = 3/4, with a strict, exactly quantified advantage over every projective basis. At c = 4/5, a certified four-outcome protocol exceeds every projective-simulable measurement on the environmental qubit by more than 0.00499536. The optimized measurement loss is nonmonotone. We also obtain an exact phase-only optimum for a related four-label problem and constructive correlation-matrix recovery formulas for mixed states with partial environmental access, relating the latter to conditional min-entropy and robustness of asymmetry.

Zenodo (CERN European Organization for Nuclear Research)
Life in Land
Openalex Percentile: Top 8%
Quantum Information and Cryptography
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