提出一个用非对称W态作为量子信道分离两量子比特态的方案,如果发送者(Alice)已知待传送态的量子信息,Alice执行两量子比特投影测量后,能分离量子信息并发送给接收者(Bob和Charlie).Bob和Charlie共同执行一个幺正操作后,Charlie再执行两个单量子比特的幺正操作就能恢复原量子态.这个方案大大减小了测量的复杂性.计算了此方案成功的几率和消耗的经典信息.
A quantum information splitting scheme of two-qubit state is proposed by using two asymmetric W states as quantum channel. It's showed that if the two-qubit state is known to the sender (Alice), then she can split quantum information and distribute it to the receivers (Bob and Charlie) by performing a two-qubit projective measurement, Bob and Charlie first perform a collective unitary operation on their qubits, and then Charlie can recover the initial quantum state by implementing two single-qubit unitary operations. So the scheme reduces greatly the measurement complexity. The success probability and classical communication cost are calculated within the scheme.
参考文献
[1] | Bennett C H,Brassard G,et al.Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels[J].Phys.Rev.Lett.,1993,70(13):1895-1899. |
[2] | Lo H K.Classical-communication cost in distributed quantum-communication complexity[J].Phys.Rev.A,2000,62(1):012313. |
[3] | Bandyopadhyay S.Teleportation and secret sharing with pure entangled states[J].Phys.Rev.A,2000,62:012308. |
[4] | Ikram M,et al.Quantum teleportation of an entangled state[J].Phys.Rev.A,2000,62:022307. |
[5] | Zhang Z J,et al.Many-agent controlled teleportation of multi-qubit quantum information[J].Phys.Lett.A,2005,341:55-59. |
[6] | Zhang Z J.Controlled teleportation of an arbitrary n-qubit quantum information using quantum secret sharing of classical message[J].Phys.Lett.A,2006,352:55-58. |
[7] | Wang X W,et al.Dense coding and teleportation with one-dimensional cluster states[J].Phys.Lett.A,2007,364:7-11. |
[8] | Yan W,Zhang W J.Quantum teleportation of canonical variables[J].Chinese Journal of Quantum Electronics (量子电子学报),2008,25(1):56-59 (in Chinese). |
[9] | Zhang X M,Xie G J,Xiao H.A new quantum teleportation circuit[J].Chinese Journal of Quantum Electronics (量子电子学报),2007,24(1):54-58 (in Chinese). |
[10] | Pati A K.Minimum classical bit for remote preparation and measurement of a qubit[J].Phys.Rev.A,2000,63:014302. |
[11] | Shi B S,Tomita A.Remote state preparation of entangled state[J].Opt.Commun.,2002,4:380-382. |
[12] | Liu J M,Wang Y Z.Remote preparation of two-particle entangled states of qubit[J].Phys.Lett.A,2003,316:159-167. |
[13] | Yu C S,Song H S,et al.Remote preparation of a qubit using maximally entangled states of qubits[J].Phys.Rev.A,2006,73:022340. |
[14] | Dai H Y,Chen P X,et al.Classical communication cost and remote preparation of the four particle GHZ class state[J].Phys.Lett.A,2006,355:285-288. |
[15] | Liu Y M,Wang Z Y,et al.Remote of preparation of three-particle GHZ class states[J].Commun.,Theor.Phys.,2008,49:359-364. |
[16] | Pan G X,et al,Classical communication and entanglement cost in preparing a class of multi-qubit states[J].Commun.Theor.Phys.,2008,49:631-634. |
[17] | Hillery M,et al.Quantum secret sharing[J].Phys.Rev.A,1999,59:1829. |
[18] | Li Y M,et al.Multiparty secret sharing of quantum information based on entanglements swapping[J].Phys.Lett.A,2004,324:420-424. |
[19] | Zhang Z J,et al.Multiparty secret sharing of quantum information using and identifying Bell states[J].Eur.Phys.J.D,2005,33:133-136. |
[20] | Hsu L Y,Li C M.Quantum secret sharing using product states[J].Phys.Rev.A,2005,71:022321. |
[21] | Zhang Z J.Multiparty quantum secret sharing of secure direct communication[J].Phys.Lett.A,2005,342:60-66. |
[22] | Deng F G,et al.Bidirectional quantum secret sharing and secret splitting with polarized single photos[J].Phys.Lett.A,2005,337:329-334. |
[23] | Zheng S B.Splitting quantum information via W states[J].Phys.Reu.A,2006,74:054303. |
[24] | Li X,Long G L,et al.Efficient multiparty quantum-secret-sharing schemes[J].Phys.Reu.A,2004,69:052307. |
[25] | Deng F G,Long G L,et al.An efficient quantum secret sharing scheme with Einstein-Podolsky-Rosen pairs[J].Phys.Lett.A,2005,340:43-50. |
[26] | Tao Y,Pan W,Luo B.Teleportation of a two-particle entangled state via a special partial two-particle entangled W state and a partial two-particle entangled state[J].Acta Sinica Quantum Optica(量子电子学报),2007,13(4):235-239 (in Chinese). |
[27] | Zhang Z J,Cheung C Y.Minimal classical communication and measurement complexity for quantum information splitting[J].J.Phys.B,2008,41:015503. |
[28] | Wang D,et al,Remote preparation of a class of three-qubit states[J].Opt.Commun.,2008,281:871-875. |
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