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Probabilistic distillation of quantum coherence

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arxiv 1804.09500 v2 pith:MFRANJBY submitted 2018-04-25 quant-ph

Probabilistic distillation of quantum coherence

classification quant-ph
keywords coherencedistillationoperationsprobabilisticquantumincoherentfindfundamental
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The ability to distill quantum coherence is pivotal for optimizing the performance of quantum technologies; however, such a task cannot always be accomplished with certainty. Here we develop a general framework of probabilistic distillation of quantum coherence in a one-shot setting, establishing fundamental limitations for different classes of free operations. We first provide a geometric interpretation for the maximal success probability, showing that under maximally incoherent operations (MIO) and dephasing-covariant incoherent operations (DIO) the problem can be simplified into efficiently computable semidefinite programs. Exploiting these results, we find that DIO and its subset of strictly incoherent operations (SIO) have equal power in probabilistic distillation of coherence from pure input states, while MIO are strictly stronger. We then prove a fundamental no-go result: distilling coherence from any full-rank state is impossible even probabilistically. We further find that in some conditions the maximal success probability can vanish suddenly beyond a certain threshold in the distillation fidelity. Finally, we consider probabilistic coherence distillation assisted by a catalyst and demonstrate, with specific examples, its superiority to the unassisted and deterministic cases.

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  1. A Nonstabilizerness Resource Law for Universal Quantum State Purification

    quant-ph 2026-07 accept novelty 7.0

    Universal two-copy quantum state purification under depolarizing noise requires magic resources that scale linearly with the fidelity gain, establishing an exact resource law for odd dimensions and tight bounds for mu...