4.7 Article

Fundamental limits to quantum channel discrimination

期刊

NPJ QUANTUM INFORMATION
卷 5, 期 -, 页码 -

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SPRINGERNATURE
DOI: 10.1038/s41534-019-0162-y

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资金

  1. EPSRC via the 'UK Quantum Communications Hub' [EP/M013472/1]
  2. European Commission via 'Continuous Variable Quantum Communications' (CiViQ) [820466]
  3. EPSRC [EP/M013472/1, 1949704] Funding Source: UKRI

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What is the ultimate performance for discriminating two arbitrary quantum channels acting on a finite-dimensional Hilbert space? Here we address this basic question by deriving a general and fundamental lower bound. More precisely, we investigate the symmetric discrimination of two arbitrary qudit channels by means of the most general protocols based on adaptive (feedback-assisted) quantum operations. In this general scenario, we first show how port-based teleportation can be used to simplify these adaptive protocols into a much simpler non-adaptive form, designing a new type of teleportation stretching. Then, we prove that the minimum error probability affecting the channel discrimination cannot beat a bound determined by the Choi matrices of the channels, establishing a general, yet computable formula for quantum hypothesis testing. As a consequence of this bound, we derive ultimate limits and no-go theorems for adaptive quantum illumination and single-photon quantum optical resolution. Finally, we show how the methodology can also be applied to other tasks, such as quantum metrology, quantum communication and secret key generation.

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