J4 ›› 2014, Vol. 31 ›› Issue (4): 442-448.
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Ding Dong-Sheng ,Zhou Zhi-Yuan, Shi Bao-Sen
Published:
2014-07-28
Online:
2014-07-30
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Ding Dong-Sheng ,Zhou Zhi-Yuan, Shi Bao-Sen . A quantum memory for high-dimensional states[J]. J4, 2014, 31(4): 442-448.
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1. Saglamyurek Erhan, Sinclair Neil, Jin Jeongwan, Slater Joshua A., Oblak Daniel, Bussie`res Fe′lix, George Mathew, Ricken Raimund, Sohler Wolfgang &Tittel Wolfgang, Broadband waveguide quantum memory for entangled photons. Nature, 469, 512-515 (2011). 2. Choi. K. S., Deng. H., Laurat. J. & Kimble. H. J. ,Mapping photonic entanglement into and out of a quantummemory. Nature, 452, 67–71 (2008). 3. Briegel. H. J., Dür1. W., Cirac. J. I., and Zoller. P., Quantum Repeaters: The Role of Imperfect Local Operations in Quantum Communication. Phys. Rev. Lett. 81, 5932 (1998). 4. Sangouard Nicolas, Simon Christoph, Zhao Bo, Chen Yu-Ao, Hugues de Riedmatten, Jian-Wei Pan, and Nicolas Gisin, Robust and efficient quantum repeaters with atomic ensembles and linear optics.Phys. Rev. A. 77, 062301 (2008). 5. Wang Jian, Yang Jeng-Yuan, FazalIrfan M., Ahmed Nisar, Yan Yan, Huang Hao, Ren Yongxiong, Yue Yang, Dolinar Samuel, Tur Moshe & Willner Alan E.. Terabit free-space data transmission employing orbital angular momentum multiplexing. Nature Photon.6, 488 (2012). 6. Huang, Hao; Xie, Guodong; Yan, Yan; Ahmed, Nisar; Ren, Yongxiong; Yue, Yang; Rogawski, Dvora; Willner, Moshe J; Erkmen, Baris I; Birnbaum, Kevin M; Dolinar, Samuel J; Lavery, Martin P J; Padgett, Miles J; Tur, Moshe; Willner, Alan E. 100??Tbit/s free-space data link enabled by three-dimensional multiplexing of orbital angular momentum, polarization, and wavelength, Opt. Lett. 39, 197-200 (2014). 7. Bechmann-PasquinucciH , and TittelW., Quantum cryptography using larger alphabets.Phys. Rev. A., 61, 062308 (2000). 8. SokolovI. V., KolohovM. I., GattiA., et. al., Quantum holographic teleportation, Opt. Commun.193, 175 (2001). 9. GolubevaT. Yu., GolubevYU.M., SokolovI. V., et. al., Quantum parallel dense coding of optical images, J. Mod. Opt. 53, 699 (2006). 10. TordrupKarl, NegrettiAntonio, and M?lmerKlaus. Holographic Quantum Computing. Phys. Rev. Lett. 101, 040501 (2008). 11. KaszlikowskiDagomir, GnacińskiPiotr, ?ukowskiMarek, MiklaszewskiWieslaw, and ZeilingerAnton,Violations of Local Realism by Two Entangled N-Dimensional Systems Are Stronger than for Two Qubits.Phys. Rev. Lett.85, 4418 (2000). 12. VértesiTamás, PironioStefano, and Brunner Nicolas,Closing the Detection Loophole in Bell Experiments Using Qudits.Phys. Rev. Lett.104, 060401 (2010) 13. RiedmattenH De, MarcikicI, ZbindenH, GisinN.Creating high dimensional entanglement using mode-locked lasers, Quantum Information Comput.2, 425 (2002). 14. O’Sullivan-Hale Malcolm N., Khan Irfan Ali, Boyd Robert W., and Howell John C., Pixel Entanglement: Experimental Realization of Optically Entangled d=3 and d=6 Qudits.Phys. Rev. Lett.94, 220501 (2005). 15. MairAlois, VaziriAlipasha, WeihsGregor&ZeilingerAnton, Entanglement of the orbital angular momentum states of photons.Nature,412, 313 (2001). 16. Franke-Arnold Sonja, Allen Les, andPadgett Miles. Advances in optical angular momentum.Laser& Photon. Rev. 2, 4, 299–313 (2008) 17. MorettiD., FelintoD., and TabosaJ. W. R.. Collapses and revivals of stored orbital angular momentum of light in a cold-atom ensemble. Phys. Rev. A. 79, 023825 (2009). 18. Shuker, M., Firstenberg, O., Pugatch, R., Ron, A. and Davidson, N., Storing Images in Warm Atomic Vapor, Phys. Rev. Lett. 100, 223601 (2008). 19. Vudyasetu, P. K., Camacho, R. M. and Howell, J. C., Storage and Retrieval of Multimode Transverse Images in Hot Atomic Rubidium Vapor, Phys. Rev. Lett. 100, 123903 (2008) 20. Glorieux, Q., Clark, J. B., Marino, A. M., Zhou, Z. F., Lett, P. D., Temporally multiplexed storage of images in a Gradient Echo Memory, Optics Express, 20, 12350-12358 (2012). 21. Higginbottom, D. B., Sparkes, B. M., Rancic, M.,Pinel, O., Hosseini, M.,Lam, P. K., and Buchler, B. C., Spatial mode storage in a gradient echo memory, Phys. Rev. A,86, 023801 (2012). 22. Nicolas A., VeissierL., GinerL., GiacobinoE., MaxeinD., LauratJ. A quantum memory for orbital angular momentum photonic qubits, Nature Photonics, 8, 234-238(2014). 23. Heinze, G., Rudolf, A., Beil, F. and Halfmann, T., Storage of images in atomic coherences in a rare-earth-ion-doped solid, Phys. Rev. A. 81, 011401(R) (2010). 24. DudinY. O., Li L., and KuzmichA., Light storage on the time scale of a minute,Physical Review A.87, 031801(R) (2013) 25. Ding, D. S., Wu, J. H., Zhou, Z. Y., Liu, Y., Shi, B. S., Zou, X. B., and Guo, G. C., Multimode image memory based on a cold atomic ensemble, Phys.Rev. A.87, 013835 (2013). (2013). 26. Ding, D. S., Wu, J. H., Zhou, Z. Y., Shi, B. S., Zou, X. B. and Guo, G. C., Frequency-multiplexed image storage and conversion in a cold atomic ensemble, Phys. Rev. A. 87, 053830 (2013). 27. Wu, J. H., Liu, Y., Ding, D.S., Zhou, Z. Y., Shi, B. S., and Guo, G. C., Light storage based on four-wave mixing and electromagnetically induced transparency in cold atoms, Phys. Rev. A. 87, 013845 (2013) 28. Ding Dong-Sheng, Zhou Zhi-Yuan, Shi Bao-Sen, GuoGuang-Can, Single-Photon-Level Quantum Image Memory Based on Cold Atomic Ensembles, Nat. Commun,4, 2527 (2013). |
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