Zhou P. Joint remote preparation of an arbitrary m-qudit state with a pure entangled quantum channel via positive operator-valued measurement[J]. J Phys,2012,A45:215305.
[2]
Guan X W, Chen X B, Wang L C, et al. Joint remote preparation of an arbitrary two-qubit state in noisy environments[J]. Inter J Theory Phys,2014,53(7):2236-2245.
[3]
Zheng S B. Splitting quantum information via W states[J]. Phys Rev,2006,A74(5):054303.
[4]
Nie Y Y, Li Y H, Liu J C, et al. Quantum state sharing of an arbitrary three-qubit state by using four sets of W-class states[J]. Optics Commun,2011,284(5):1457-1460.
[5]
Muralidharan S, Panigrahi P K. Quantum information splitting using multipartite cluster states[J]. Phys Rev,2008,A78:062333.
[6]
Nie Y Y, Li Y H, Liu J C, et al. Quantum information splitting of an arbitrary three-qubit state by using two four-qubit cluster states[J]. Quantum Infor Process,2011,10(3):297-305.
[7]
Muralidharan S, Jain S, Panigrahi P K. Splitting of quantum information using N-qubit linear cluster states[J]. Optics Commun,2011,284(4):1081-1085.
[8]
Luo M X, Deng Y. Quantum splitting an arbitrary three-qubit state with chi-state[J]. Quantum Infor Process,2013,12(2):772-784.
[9]
Zhan Y B, Zhang Q Y, Wang Y W. Schemes for splitting quantum information with four-particle genuine entangled states[J]. Commun Theory Phys,2010,53:847-851.
[10]
Wang X W, Xia L X, Wang Z Y, et al. Hierarchical quantum-information splitting[J]. Optics Commun,2010,283(6):1196-1199.
[11]
Luo M X, Deng Y, Chen X B, et al. Faithful quantum broadcast beyond the no-go theorem[J]. Quantum Infor Process,2013,12(5):1969-1979.
[12]
Ma S Y, Chen X B, Luo M X, et al. Probabilistic quantum network coding of M-qudit states over the butterfly network[J]. Optics Commun,2010,283:497-501.
[13]
Su Y, Chen X B, Yang Y X. N-to-M joint remote state preparation of 1-level states[J]. Inter J Quantum Infor,2012,10:1250006.
[14]
Zhang Z H, Shu L, Mo Z W, et al. Joint remote state preparation between multi-sender and multi-receiver[J]. Quantum Infor Process,2014,13(9):1979-2005.
[15]
Xia Y, Song J, Song H S. Multiparty remote state preparation[J]. J Phys,2007,B40:3719.
[16]
Nguyen B A, Kim J. Joint remote state preparation[J]. J Phys,2008,B41:095501.
[17]
Nguyen B A. Joint remote preparation of a general two-qubit state[J]. J Phys,2009,B42:125501.
[18]
Luo M X, Chen X B, Ma S Y, et al. Joint remote preparation of an arbitrary three-qubit state[J]. Opt Commun,2010,283:4796-4801.
[19]
Jiang M, Jiang F. Deterministic joint remote preparation of arbitrary multi-qudit states[J]. Phys Lett,2013,A377(38):2524-2530.
[20]
Chen Q Q, Xia Y, Nguyen B A. Joint remote preparation of an arbitrary three-qubit state via EPR-type pairs[J]. Optics Commun,2011,284(10):2617-2621.
[21]
Peng J Y, Luo M X, Mo Z W, et al. Flexible deterministic joint remote state preparation of some states[J]. Inter J Quantum Infor,2013,11:1350044.
[22]
Zhan Y B, Ma P C. Deterministic joint remote preparation of arbitrary two- and three-qubit entangled states[J]. Quantum Infor Process,2013,12(2):997-1009.
[23]
Chen Z F, Liu J M, Ma L. Deterministic joint remote preparation of an arbitrary two-qubit state in the presence of noise[J]. Chinese Phys,2014,B23:020312.
[24]
Hou K. Joint remote preparation of four-qubit cluster-type states with multiparty[J]. Quantum Infor Process,2013,12(12):3821-3833.
[25]
Luo M X, Deng Y. Joint remote preparation of an arbitrary 4-qubit chi-state[J]. Inter J Theory Phys,2012,51:3027-3036.
[26]
Peng J Y, Bai M Q, Mo Z W. Joint remote state preparation of a four-dimensional quantum state[J]. Chinese Phys Lett,2013,31:010301.
[27]
Luo M X, Peng J Y, Mo Z W. Joint RSP of an arbitrary five-qubit Brown state[J]. Inter J Theory Phys,2013,52(2):644-653.
[28]
Chen Q Q, Xia Y, Song J. Probabilistic joint remote preparation of a two-particle high-dimensional equatorial state[J]. Optics Commun,2011,284(20):5031-5035.
[29]
Choudhury B S, Dhara A. Joint remote state preparation for two-qubit equatorial states[J]. Quantum Infor Process,2014,doi:11128-014-0835-6.
[30]
Bennett C H, Brassard G, Crépeau C, et al. Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels[J]. Phys Rev Lett,1993,70:1895.
[31]
Nielsen M A, Chuang I L. Quantum Computation and Quantum Information[M]. Cambridge:Cambridge University Press,2000.
[32]
Lo H K. Classical-communication cost in distributed quantum-information processessing: a generalization of quantum-communication complexity[J]. Phys Rev,2000,A62:012313.
[33]
Pati A K. Minimum classical bit for remote preparation and measurement of a qubit [J]. Phys Rev,2000,A63:014302.
[34]
Bennett C H, DiVincenzo D P, Shor P W, et al. Remote state preparation[J]. Phys Rev Lett,2001,87:07790.
[35]
Devetak I, Berger T. Low-entanglement remote state preparation[J]. Phys Rev Lett,2001,87:197901.
[36]
Jain R. Communication complexity of remote state preparation with entanglement[J]. Quantum Information & Computation,2006,6(4):461-464.
[37]
Bennett C H, Hayden P, Leung D W, et al. Remote preparation of quantum states[J]. IEEE Transactions on Information Theory,2005,51(1):56-74.
[38]
Zeng B, Zhang P. Remote-state preparation in higher dimension and the parallelizable manifold[J]. Phys Rev,2002,A65:022316.
[39]
Luo M X, Deng Y, Chen X B, et al. The faithful remote preparation of general quantum states[J]. Quantum Information Processessing,2013,12(1):279-294.
[40]
Berry D W, Sanders B C. Optimal remote state preparation[J]. Phys Rev Lett,2003,90:057901.
[41]
Berry D W. Resources required for exact remote state preparation[J]. Phys Rev,2004,A70:062306.
[42]
Leung D W, Shor P W. Oblivious remote state preparation[J]. Phys Rev Lett,2003,90:127905.
[43]
Ye M Y, Zhang Y S, Guo G C. Faithful remote state preparation using finite classical bits and a nonmaximally entangled state[J]. Phys Rev,2004,A69:022310.
[44]
Shi B S, Tomita A. Remote state preparation of an entangled state[J]. J Opt B:Quantum Semiclass Opt,2002,4:380.
[45]
Hayashi T H, Horibe M. Remote state preparation without oblivious conditions[J]. Phys Rev,2003,A67:052302.
[46]
Abeyesinghe A, Hayden P. Generalized remote state preparation: trading cbits, qubits, and ebits in quantum communication[J]. Phys Rev,2003,A68:062319.
[47]
Liu J M, Wang Y Z. Remote preparation of a two-particle entangled state[J]. Phys Lett,2003,A316(2/3/4):159-167.
[48]
Kurucz Z, Adam P, Kis Z, et al. Continuous variable remote state preparation[J]. Phys Rev,2005,A72:052315.
[49]
Liu J M, Wang Y Z. Probabilistic remote state preparation by W states[J]. Chinese Phys,2004,13:147.
[50]
Zhan Y B. Remote state preparation of a greenberger-horne-zeilinger class state[J]. Commun Theory Phys,2005,43:637.
[51]
Dai H Y, Chen P X, Liang L M, et al. Classical communication cost and remote preparation of the four-particle GHZ class state[J]. Phys Lett,2006,A355(4):285-288.
[52]
Xia Y, Song J, Song H S. Remote preparation of the N-particle GHZ state using quantum statistics[J]. Optics Commun,2007,277(1):219-222.
[53]
Huang Y X, Zhan M S. Remote preparation of multipartite pure state[J]. Phys Lett,2004,A327(5):404-408.
[54]
Yu C S, Song H S, Wang Y H. Remote preparation of a qudit using maximally entangled states of qubits[J]. Phys Rev,2006,A73:022340.
[55]
Zha X W, Song H Y. Remote preparation of a two-particle state using a four-qubit cluster state[J]. Optics Commun,2011,284(5):1471-1474.
[56]
Wang D, Liu Y M, Zhang Z J. Remote preparation of a class of three-qubit states[J]. Optics Commun,2008,281(4):871-875.
[57]
Liu J M, Feng X L, Oh C H. Remote preparation of a three-particle state via positive operator-valued measurement[J]. J Phys,2009,B42:055508.
[58]
Wang Z Y. Highly efficient remote preparation of an arbitrary three-qubit state via a four-qubit cluster state and an EPR state[J]. Quantum Infor Process,2013,12(2):1321-1334.
[59]
Ma S Y, Chen X B, Luo M X, et al. Remote preparation of a four-particle entangled cluster-type state[J]. Optics Commun,2011,284(16):4088-4093.
[60]
Zhan Y B, Fu H, Li X W, et al. Deterministic remote preparation of a four-qubit cluster-type entangled state[J]. Inter J Theory Phys,2013,52(8):2615-2622.
[61]
Ma S Y, Luo M X, Chen X B, et al. Schemes for remotely preparing an arbitrary four-qubit chi-state[J]. Quantum Infor Process,2014,13(9):1951-1965.
[62]
Huang S. Remote state preparation using positive operator-valued measures[J]. Phys Lett,2013,A377(6):448-451.
[63]
Jia H Y, Wen Q Y, Wu X, et al. Remote preparation of a six-particle entangled cluster-type state[J]. Inter J Theory Phys,2012,51(7):2086-2093.
[64]
Liu J M, Feng X L, Oh C H. Remote preparation of arbitrary two- and three-qubit states[J]. Euro Phys Lett,2009,87:30006.
[65]
Zhan Y B. Deterministic remote preparation of arbitrary two- and three-qubit states[J]. Euro Phys Lett,2012,98:40005.
[66]
Ma S Y, Luo M X. Efficient remote preparation of arbitrary two- and three-qubit states via the χ state[J]. Chinese Phys,2014,B23:090308.
[67]
Xiang G Y, Li J, Yu B, et al. Remote preparation of mixed states via noisy entanglement[J]. Phys Rev,2005,A72:012315.
[68]
Liang H Q, Liu J M, Feng S S, et al. Remote state preparation via a GHZ-class state in noisy environments[J]. J Phys,2011,B44:115506.
[69]
Luo M X, Chen X B, Ma S Y, et al. Remote preparation of an arbitrary two-qubit state with three-party[J]. Inter J Theory Phys,2010,49:1261-1273.
[70]
Bennett C H, Brassard G, Popescu S, et al. Purification of noisy entanglement and faithful teleportation via noisy channels[J]. Phys Rev Lett,1996,76:721-725.
[71]
Luo M X, Chen X B, Yang Y X, et al. Classical communication costs in quantum information Processessing[J]. Inter J Quantum Infor,2011,9(5):1267-1278.
[72]
Xia Y, Song J, Song H S, et al. Multiparty remote state preparation with linear optical elements[J]. Inter J Quantum Infor,2008,6(5):1127.
[73]
Nguyen B A, Kim A. Collective remote state preparation[J]. Inter J Quantum Infor,2008,6:1051.
[74]
Hou K, Wang J, Lu Y L, et al. Joint remote preparation of a multipartite GHZ-class state[J]. Inter J Theory Phys,2009,48:2005.
[75]
Wang D, Ye L. Multiparty-controlled joint remote state preparation[J]. Quantum Infor Process,2013,12(10):3222-3237.
[76]
Liu L L, Hwang T. Controlled remote state preparation protocols via AKLT states[J]. Quantum Infor Process,2014,13(7):1639-1650.