2N qubit “mirror states” for optimal quantum communication

被引:0
作者
S. Muralidharan
S. Karumanchi
S. Jain
R. Srikanth
P. K. Panigrahi
机构
[1] School of EPS,
[2] Heriot-Watt University,undefined
[3] Birla Institute of Technology and Science,undefined
[4] Indian Institute of Technology Bombay,undefined
[5] Poornaprajna Institute of Scientific Research,undefined
[6] Raman Research Institute,undefined
[7] Indian Institute of Science Education and Research (IISER) Kolkata,undefined
[8] Physical Research Laboratory,undefined
来源
The European Physical Journal D | 2011年 / 61卷
关键词
Entangle State; Cluster State; Qubit State; Quantum Secret Sharing; Mirror State;
D O I
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中图分类号
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摘要
We introduce a new genuinely 2N qubit state, known as the “mirror state” with interesting entanglement properties. The well known Bell and the cluster states form a special case of these “mirror states”, for N = 1 and N = 2 respectively. It can be experimentally realized using SWAP and multiply controlled phase shift operations. After establishing the general conditions for a state to be useful for various communicational protocols involving quantum and classical information, it is shown that the present state can optimally implement algorithms for the quantum teleportation of an arbitrary N qubit state and achieve quantum information splitting in all possible ways. With regard to superdense coding, one can send 2N classical bits by sending only N qubits and consuming N ebits of entanglement. Explicit comparison of the mirror state with the rearranged N Bell pairs and the linear cluster states is considered for these quantum protocols. We also show that mirror states are more robust than the rearranged Bell pairs with respect to a certain class of collisional decoherence.
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页码:757 / 763
页数:6
相关论文
共 93 条
[1]  
Bennett C.H.(1993)undefined Phys. Rev. Lett. 70 1895-undefined
[2]  
Brassard G.(1999)undefined Phys. Rev. A 59 1829-undefined
[3]  
Crepeau C.(1992)undefined Phys. Rev. Lett. 69 2881-undefined
[4]  
Jozsa R.(2000)undefined Phys. Rev. A 61 052306-undefined
[5]  
Peres A.(2001)undefined Phys. Rev. Lett. 86 910-undefined
[6]  
Wootters W.K.(2000)undefined Phys. Rev. A 62 062314-undefined
[7]  
Hillery M.(2002)undefined Phys. Rev. A 65 052112-undefined
[8]  
Buzek V.(2005)undefined J. Phys. A 38 1119-undefined
[9]  
Berthiaume A.(1998)undefined Phys. Rev. A 58 4394-undefined
[10]  
Bennett C.H.(2003)undefined Phys. Lett. A 314 267-undefined