量子隐形传态

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量子遥传(quantum teleportation),又称量子隐形传输量子隐形传送量子隐形传态,是一种利用量子纠缠来传送量子态至任意距离的技术。[1]名词翻译可能最早见于 2000 年科学月刊上的文章,因为 tele 字首表示远方的意思。 量子遥传并不会传送任何物质能量。这样的技术在量子信息量子计算上相当有帮助。然而,这方式无法传递传统的资讯,因此无法使用在超光速通讯上面。量子遥传与一般所说的瞬间移动没有关系,量子遥传无法传递系统本身,也无法用来安排分子以在另一端组成物体。

2019年8月18日中国科学技术大学潘建伟、陆朝阳等和奥地利维也纳大学塞林格小组合作,在国际上首次成功实现高维度量子体系的隐形传态。此前的实验中只能完成二维传输,此一突破可以达成任意维度传输,向实用化大幅推进。该研究成果发表于国际权威学术期刊《物理评论快报》。[2]

注释

参考文献

  • Theoretical proposal:
    • C. H. Bennett, G. Brassard, C. Crépeau, R. Jozsa, A. Peres, W. K. Wootters, Teleporting an Unknown Quantum State via Dual Classical and Einstein-Podolsky-Rosen Channels, Phys. Rev. Lett. 70, 1895-1899 (1993) (pdf[永久失效链接]). This is the seminal paper that laid out the entanglement protocol.
    • L. Vaidman, Teleportation of Quantum States, Phys. Rev. A 49, 1473-1476 (1994)
    • G Brassard, S Braunstein, R Cleve, Teleportation as a Quantum Computation, Physica D 120 43-47 (1998)
    • A. Peres, "What is actually teleported?", IBM Journal of Research and Development, Vol. 48, Issue 1, (2004)(this document online)
    • G. Rigolin, Quantum Teleportation of an Arbitrary Two Qubit State and its Relation to Multipartite Entanglement, Phys. Rev. A 71 032303 (2005)(this document online)
    • Shi-Biao Zheng, "Scheme for approximate conditional teleportation of an unknown atomic state without the Bell-state measurement", Phys. Rev. A 69, 064302 (2004).
    • W. B. Cardoso, A. T. Avelar, B. Baseia, and N. G. de Almeida, "Teleportation of entangled states without Bell-state measurement", Phys. Rev. A 72, 045802 (2005) .
    • Michael N. Leuenberger, Michael E. Flatte, David D. Awschalom, "Teleportation of Electronic Many-Qubit States Encoded in the Electron Spin of Quantum Dots via Single Photons", Phys. Rev. Lett. 94, 107401 (2005) .
  • First experiments with photons:
    • D. Bouwmeester, J.-W. Pan, K. Mattle, M. Eibl, H. Weinfurter, A. Zeilinger, Experimental Quantum Teleportation, Nature 390, 6660, 575-579 (1997).
    • D. Boschi, S. Branca, F. De Martini, L. Hardy, & S. Popescu, Experimental Realization of Teleporting an Unknown Pure Quantum State via Dual classical and Einstein-Podolsky-Rosen channels, Phys. Rev. Lett. 80, 6, 1121-1125 (1998)
    • Y.-H. Kim, S.P. Kulik, and Y. Shih, Quantum teleportation of a polarization state with a complete bell state measurement, Phys. Rev. Lett. 86, 1370 (2001).
    • I. Marcikic, H. de Riedmatten, W. Tittel, H. Zbinden, N. Gisin, Long-Distance Teleportation of Qubits at Telecommunication Wavelengths, Nature, 421, 509 (2003)
    • R. Ursin et al., Quantum Teleportation Link across the Danube, Nature 430, 849 (2004)
  • First experiments with atoms:
    • M. Riebe, H. Häffner, C. F. Roos, W. Hänsel, M. Ruth, J. Benhelm, G. P. T. Lancaster, T. W. Körber, C. Becher, F. Schmidt-Kaler, D. F. V. James, R. Blatt, Deterministic Quantum Teleportation with Atoms, Nature 429, 734-737 (2004)
    • M. D. Barrett, J. Chiaverini, T. Schaetz, J. Britton, W. M. Itano, J. D. Jost, E. Knill, C. Langer, D. Leibfried, R. Ozeri, D. J. Wineland, Deterministic Quantum Teleportation of Atomic Qubits, Nature 429, 737 (2004).
    • S. Olmschenk, D. N. Matsukevich, P. Maunz, D. Hayes, L.-M. Duan, and C. Monroe, Quantum Teleportation between Distant Matter Qubits, Science 323, 486 (2009).

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