4.8 Article

Measuring Quantum Coherence with Entanglement

期刊

PHYSICAL REVIEW LETTERS
卷 115, 期 2, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.115.020403

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资金

  1. Alexander von Humboldt-Foundation
  2. John Templeton Foundation
  3. EU (IP SIQS)
  4. ERC AdG OSYRIS
  5. EU-Spanish Ministry (CHISTERA DIQIP)
  6. Department of Atomic Energy, Government of India
  7. Foundational Questions Institute [FQXi-RFP3-1317]
  8. ERC StG GQCOP [637352]

向作者/读者索取更多资源

Quantum coherence is an essential ingredient in quantum information processing and plays a central role in emergent fields such as nanoscale thermodynamics and quantum biology. However, our understanding and quantitative characterization of coherence as an operational resource are still very limited. Here we show that any degree of coherence with respect to some reference basis can be converted to entanglement via incoherent operations. This finding allows us to define a novel general class of measures of coherence for a quantum system of arbitrary dimension, in terms of the maximum bipartite entanglement that can be generated via incoherent operations applied to the system and an incoherent ancilla. The resulting measures are proven to be valid coherence monotones satisfying all the requirements dictated by the resource theory of quantum coherence. We demonstrate the usefulness of our approach by proving that the fidelity-based geometric measure of coherence is a full convex coherence monotone, and deriving a closed formula for it on arbitrary single-qubit states. Our work provides a clear quantitative and operational connection between coherence and entanglement, two landmark manifestations of quantum theory and both key enablers for quantum technologies.

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