4.6 Article

Quantum entanglement and teleportation in pulsed cavity optomechanics

期刊

PHYSICAL REVIEW A
卷 84, 期 5, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.84.052327

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资金

  1. European Commission (MINOS, QESSENCE)
  2. European Research Council (ERC StG QOM)
  3. Austrian Science Fund (FWF) (START, SFB FoQuS)
  4. Centre for Quantum Engineering and Space-Time Research (QUEST)
  5. Alexander von Humboldt Foundation
  6. FWF Doctoral Program CoQuS [W1210]
  7. Austrian Science Fund (FWF) [Y 414] Funding Source: researchfish
  8. Austrian Science Fund (FWF) [W1210] Funding Source: Austrian Science Fund (FWF)

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Entangling a mechanical oscillator with an optical mode is an enticing and yet a very challenging goal in cavity optomechanics. Herewe consider a pulsed scheme to create Einstein-Podolsky-Rosen-type entanglement between a traveling-wave light pulse and a mechanical oscillator. The entanglement can be verified unambiguously by a pump-probe sequence of pulses. In contrast to schemes that work in a steady-state regime under a continuous-wave drive, this protocol is not subject to stability requirements that normally limit the strength of achievable entanglement. We investigate the protocol's performance under realistic conditions, including mechanical decoherence, in full detail. We discuss the relevance of a high mechanical Qf product for entanglement creation and provide a quantitative statement on which magnitude of the Qf product is necessary for a successful realization of the scheme. We determine the optimal parameter regime for its operation and show it to work in current state-of-the-art systems.

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