Efficient error correction for N-particle polarized entangled states distribution over the collective-noise channel exploiting time entanglement
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Yi‐Hao Kang | Pei-Min Lu | Y. Xia | Yan Xia
[1] Seung-Woo Lee,et al. Near-deterministic quantum teleportation and resource-efficient quantum computation using linear optics and hybrid qubits , 2011, 1112.0825.
[2] Franco Nori,et al. Implementing general measurements on linear optical and solid-state qubits , 2012, 1201.2234.
[3] Fu-Guo Deng,et al. Efficient multipartite entanglement purification with the entanglement link from a subspace , 2011, 1110.0059.
[4] Fuguo Deng. One-step error correction for multipartite polarization entanglement , 2011, 1107.0093.
[5] Jie Song,et al. Efficient implementation of the two-qubit controlled phase gate with cross-Kerr nonlinearity , 2011 .
[6] Hong-Yu Zhou,et al. Passively self-error-rejecting qubit transmission over a collective-noise channel , 2008, Quantum Inf. Comput..
[7] Fuguo Deng,et al. One-step deterministic polarization-entanglement purification using spatial entanglement , 2010, 1008.3509.
[8] Yu-Bo Sheng,et al. Efficient quantum entanglement distribution over an arbitrary collective-noise channel , 2010, 1005.0050.
[9] A. Yao,et al. All-optical delay line based on a cavity soliton laser with injection , 2010 .
[10] Jingjun Xu,et al. Angular multiplexing storage of light pulses and addressable optical buffer memory in Pr 3 + : Y 2 SiO 5 based on electromagnetically induced transparency , 2009 .
[11] Yu-Bo Sheng,et al. Multipartite entanglement purification with quantum nondemolition detectors , 2008, 0810.0071.
[12] Jie Song,et al. Quantum nodes for W-state generation in noisy channels , 2008 .
[13] Jie Song,et al. Linear optical protocol for preparation of N-photon Greenberger–Horne–Zeilinger state with conventional photon detectors , 2008 .
[14] Jie Song,et al. Quantum computation and entangled-state generation through adiabatic evolution in two distant cavities , 2007 .
[15] Mang Feng,et al. Implementation of a nonlocal N-qubit conditional phase gate by single-photon interference , 2007 .
[16] Fuguo Deng,et al. Faithful qubit transmission against collective noise without ancillary qubits , 2007, 0708.0068.
[17] Guang-Can Guo,et al. Linear optical implementation of the two-qubit controlled phase gate with conventional photon detectors , 2007 .
[18] T. Wei,et al. Hyperentangled Bell-state analysis , 2007, quant-ph/0703117.
[19] Guang-Can Guo,et al. Linear optical scheme for direct implementation of a nondestructive N -qubit controlled phase gate , 2006 .
[20] R. Camacho,et al. Low-distortion slow light using two absorption resonances , 2006, physics/0607055.
[21] Fuguo Deng,et al. Improving the security of multiparty quantum secret sharing against Trojan horse attack , 2005, quant-ph/0506194.
[22] Hideharu Mikami,et al. Generation of the four-photon W state and other multiphoton entangled states using parametric down-conversion , 2004 .
[23] W. Munro,et al. A near deterministic linear optical CNOT gate , 2004 .
[24] Christian Kurtsiefer,et al. Experimental realization of a three-qubit entangled W state. , 2004, Physical review letters.
[25] Fuguo Deng,et al. Two-step quantum direct communication protocol using the Einstein-Podolsky-Rosen pair block , 2003, quant-ph/0308173.
[26] Zhi-Ming Zhang,et al. Entangling distant atoms by interference of polarized photons. , 2003, Physical review letters.
[27] M. Koashi,et al. Experimental extraction of an entangled photon pair from two identically decohered pairs , 2003, Nature.
[28] Jian-Wei Pan,et al. Experimental realization of entanglement concentration and a quantum repeater. , 2003, Physical review letters.
[29] V. N. Gorbachev,et al. Can the states of the W-class be suitable for teleportation , 2002, quant-ph/0203028.
[30] M. Koashi,et al. Polarization-entangled W state using parametric down-conversion , 2002, quant-ph/0208162.
[31] Akihisa Tomita,et al. Teleportation of an unknown state by W state , 2002 .
[32] G. Long,et al. General scheme for superdense coding between multiparties , 2001, quant-ph/0110112.
[33] Jian-Wei Pan,et al. Polarization entanglement purification using spatial entanglement. , 2001, Physical review letters.
[34] Jian-Wei Pan,et al. Practical scheme for entanglement concentration , 2001, quant-ph/0104039.
[35] M. Koashi,et al. Concentration and purification scheme for two partially entangled photon pairs , 2001, quant-ph/0101042.
[36] Jian-Wei Pan,et al. Entanglement purification for quantum communication , 2000, Nature.
[37] J. Cirac,et al. Three qubits can be entangled in two inequivalent ways , 2000, quant-ph/0005115.
[38] David P. DiVincenzo,et al. Quantum information and computation , 2000, Nature.
[39] Lov K. Grover,et al. Quantum computation , 1999, Proceedings Twelfth International Conference on VLSI Design. (Cat. No.PR00013).
[40] Julia Kempe,et al. Multiparticle entanglement and its applications to cryptography , 1999 .
[41] V. Buzek,et al. Quantum secret sharing , 1998, quant-ph/9806063.
[42] S. Popescu,et al. Multi-Particle Entanglement Purification Protocols , 1997, Technical Digest. 1998 EQEC. European Quantum Electronics Conference (Cat. No.98TH8326).
[43] Flöthmann,et al. Crossed-field hydrogen atom and the three-body Sun-Earth-Moon problem. , 1996, Physical review. A, Atomic, molecular, and optical physics.
[44] Deutsch,et al. Quantum Privacy Amplification and the Security of Quantum Cryptography over Noisy Channels. , 1996, Physical review letters.
[45] Charles H. Bennett,et al. Purification of noisy entanglement and faithful teleportation via noisy channels. , 1995, Physical review letters.
[46] Charles H. Bennett,et al. Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels. , 1993, Physical review letters.
[47] Charles H. Bennett,et al. Communication via one- and two-particle operators on Einstein-Podolsky-Rosen states. , 1992, Physical review letters.
[48] A. Zeilinger,et al. Going Beyond Bell’s Theorem , 2007, 0712.0921.
[49] Werner,et al. Quantum states with Einstein-Podolsky-Rosen correlations admitting a hidden-variable model. , 1989, Physical review. A, General physics.