Construction of a quantum repeater based on a quantum dot in an optical microcavity system

被引:13
作者
Wang, C. [1 ]
Wang, T-J
Zhang, Y.
机构
[1] Beijing Univ Posts & Telecommun, Sch Sci, Beijing 100876, Peoples R China
关键词
quantum repeater; quantum dot; microcavity; ENTANGLEMENT PURIFICATION; ATOMIC ENSEMBLES; NOISY CHANNELS; LINEAR OPTICS; COMMUNICATION;
D O I
10.1088/1612-2011/11/6/065202
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We investigate an efficient quantum repeater protocol based on quantum dots (QDs) and optical microcavity coupled systems. The proposed system can be used for long-distance quantum entanglement distribution, exploiting the interaction between single photons and QDs embedded in optical microcavities. We present the entanglement generation and entanglement swapping modules with QDs in microcavity systems and generalize it to quantum repeaters. The utilization of QDs and coupled cavities leads to a high success probability for the generation of entanglement. By using current and near future technology, entanglement with a high fidelity can be achieved and robust quantum communication over long-distance channels is feasible.
引用
收藏
页数:7
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共 49 条
[1]   Giant optical nonlinearity induced by a single two-level system interacting with a cavity in the Purcell regime [J].
Auffeves-Garnier, Alexia ;
Simon, Christoph ;
Gerard, Jean-Michel ;
Poizat, Jean-Philippe .
PHYSICAL REVIEW A, 2007, 75 (05)
[2]   Optimal entanglement generation for efficient hybrid quantum repeaters [J].
Azuma, Koji ;
Sota, Naoya ;
Namiki, Ryo ;
Ozdemir, Sahin Kaya ;
Yamamoto, Takashi ;
Koashi, Masato ;
Imoto, Nobuyuki .
PHYSICAL REVIEW A, 2009, 80 (06)
[3]   Purification of noisy entanglement and faithful teleportation via noisy channels [J].
Bennett, CH ;
Brassard, G ;
Popescu, S ;
Schumacher, B ;
Smolin, JA ;
Wootters, WK .
PHYSICAL REVIEW LETTERS, 1996, 76 (05) :722-725
[4]   Long lived coherence in self-assembled quantum dots [J].
Birkedal, D ;
Leosson, K ;
Hvam, JM .
PHYSICAL REVIEW LETTERS, 2001, 87 (22) :227401-227401
[5]   CNOT and Bell-state analysis in the weak-coupling cavity QED regime [J].
Bonato, Cristian ;
Haupt, Florian ;
Oemrawsingh, Sumant S. R. ;
Gudat, Jan ;
Ding, Dapeng ;
van Exter, Martin P. ;
Bouwmeester, Dirk .
PHYSICAL REVIEW LETTERS, 2010, 104 (16)
[6]   Ultralong dephasing time in InGaAs quantum dots [J].
Borri, P ;
Langbein, W ;
Schneider, S ;
Woggon, U ;
Sellin, RL ;
Ouyang, D ;
Bimberg, D .
PHYSICAL REVIEW LETTERS, 2001, 87 (15) :157401-157401
[7]   Hybrid Long-Distance Entanglement Distribution Protocol [J].
Brask, J. B. ;
Rigas, I. ;
Polzik, E. S. ;
Andersen, U. L. ;
Sorensen, A. S. .
PHYSICAL REVIEW LETTERS, 2010, 105 (16)
[8]   Fast entanglement distribution with atomic ensembles and fluorescent detection [J].
Brask, J. B. ;
Jiang, L. ;
Gorshkov, A. V. ;
Vuletic, V. ;
Sorensen, A. S. ;
Lukin, M. D. .
PHYSICAL REVIEW A, 2010, 81 (02)
[9]   Quantum repeaters:: The role of imperfect local operations in quantum communication [J].
Briegel, HJ ;
Dür, W ;
Cirac, JI ;
Zoller, P .
PHYSICAL REVIEW LETTERS, 1998, 81 (26) :5932-5935
[10]   Error correction in ensemble registers for quantum repeaters and quantum computers [J].
Brion, E. ;
Pedersen, L. H. ;
Saffman, M. ;
Molmer, K. .
PHYSICAL REVIEW LETTERS, 2008, 100 (11)