• Acta Photonica Sinica
  • Vol. 49, Issue 10, 1027002 (2020)
Xin-wen WANG1、2, Hui-min ZHANG1, Ke LIU1, and Yan LIU1
Author Affiliations
  • 1College of Physics and Electronic Engineering,Hengyang Normal University,Hengyang,Hunan 421002,China
  • 2Hunan Provincial Key Laboratory of Intelligent Information Processing and Application,Hengyang,Hunan 421002,China
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    DOI: 10.3788/gzxb20204910.1027002 Cite this Article
    Xin-wen WANG, Hui-min ZHANG, Ke LIU, Yan LIU. Dependence of Bipartite Entanglement on Qubit-basis in the Amplitude-damping Environment[J]. Acta Photonica Sinica, 2020, 49(10): 1027002 Copy Citation Text show less
    References

    [1] V VEDRAL. Quantum entanglement. Nature Physics, 10, 256-258(2014).

    [2] R HORODECKI, P HORODECKI, M HORODECKI. Quantum entanglement. Review of Modern Physics, 81, 865-942(2009).

    [3] J W PAN, Z B CHEN, C Y LU. Multiphoton entanglement and interferometry. Review of Modern Physics, 84, 777-838(2012).

    [4] Si-meng WANG, Wei ZHANG, Cong LIAO. Controlled bidirectional two-qubit quantum teleportation. Acta Photonica Sinica, 47, 0927002(2018).

    [5] C W GARDINER, P ZOLLER. Quantum noise(2004).

    [6] D CAVALCANTI, P SKRZYPCZYK, I ŠUPIC. All entangled states can demonstrate nonclassical teleportation. Physical Review Letters, 119, 110501(2017).

    [7] L MASANES. All bipartite entangled states are useful for information processing. Physical Review Letters, 96, 150501(2006).

    [8] L T KNOLL, C T SCHMIEGELOW, M A LAROTONDA. Noisy quantum teleportation: An experimental study on the influence of local environments. Physical Review A, 90, 042332(2014).

    [9] T YU, J H EBERLY. Finite-time disentanglement via spontaneous emission. Physical Review Letters, 93, 140404(2004).

    [10] T YU, J H EBERLY. Sudden death of entanglement. Science, 323, 598-601(2009).

    [11] M P ALMEIDA, F DE MELO, M HOR-MEYLL. Environment-induced sudden death of entanglement. Science, 316, 579-582(2007).

    [12] L M DUAN, C MONROE. Quantum networks with trapped ions. Review of Modern Physics, 82, 1209-1224(2010).

    [13] F MEI, Y F YU, X L FENG. Quantum entanglement distribution with hybrid parity gate. Physical Review A, 82, 052315(2010).

    [14] F PLATZER, F MINTERT, A BUCHLEITNER. Optimal dynamical control of many-body entanglement. Physical Review Letters, 105, 020501(2010).

    [15] Y S KIM, O KWON. Protecting entanglement from decoherence using weak measurement and quantum measurement reversal. Nature Physics, 8, 117-120(2012).

    [16] J S XU, K SUN, C F LI. Experimental recovery of quantum correlations in absence of system-environment back-action. Nature Communications, 4, 2851(2013).

    [17] B M TERHAL. Quantum error correction for quantum memories. Review of Modern Physics, 87, 307-346(2015).

    [18] Q SUN, M AL-AMRI, L DAVIDOVICH, M ZUBAIRY. Physical Review A, 82, 052323(2010).

    [19] C H BENNETT, G BRASSARD, S POPESCU. Purification of noisy entanglement and faithful teleportation via noisy channels. Physical Review Letters, 76, 722-725(1996).

    [20] P X CHEN, L M LIANG, C Z LI. Necessary and sufficient condition for distillability with unit fidelity from finite copies of a mixed state: The most efficient purification protocol. Physical Review A, 66, 022309(2002).

    [21] X W WANG, S Q TANG, J B YUAN. Distilling perfect GHZ states from two copies of non-GHZ-diagonal mixed states. Optics Communications, 392, 185-189(2017).

    [22] J B YUAN, S Q TANG, X W WANG. One-step distillation of local-unitary-equivalent-GHZ-type states. Quantum Information Processing, 17, 259(2018).

    [23] M HORODECKI, P HORODECKI, R HORODECKI. Inseparable two spin-1/2 density matrices can be distilled to a singlet form. Physical Review Letters, 78, 574-577(1997).

    [24] P G KWIAT, S BARRAZA-LOPEZ, A STEFANOV. Experimental entanglement distillation and ‘hidden’ non-locality. Nature, 409, 1014-1017(2001).

    [25] Xin-wen WANG, Si-xia. YU, Deng-Yu ZHANG. Effect of weak measurement on entanglement distribution over noisy channels. Scientific Reports, 6, 22408(2016).

    [26] S N FILIPPOV, V V FRIZEN, D V KOLOBOVA. Ultimate entanglement robustness of two-qubit states against general local noises. Physical Review A, 97, 012322(2018).

    [27] T T ARTHUR, T MARTIN. Disentanglement and quantum states transitions dynamics in spin-qutrit systems: dephasing random telegraph noise and the relevance of the initial state. Quantum Information Processing, 17, 37(2018).

    [28] O GUHNE. Robustness of multiparticle entanglement:specific entanglement classes and random states. Molecular and Optical Physics, 47, 055503(2014).

    [29] Qing-hong LIAO, Juan XU, Qiu-rong YAN. The study of dynamics properties of entanglement of two interacting atoms coupled to Markovion and non-Markovion environment. Acta Photonica Sinica, 44, 0927001(2015).

    [30] F FROWIS, W DÜR. Stability of encoded macroscopic quantum superpositions. Physical Review A, 85, 052329(2012).

    [31] X W WANG, S Q TANG, Y LIU, J B YUAN. Improving the robustness of entangled states by basis transformation. Entropy, 21, 59(2019).

    [32] T KONRAD, F DE MELO, M TIERSCH. Evolution equation for quantum entanglement. Nature Physics, 4, 99-102(2008).

    [33] J S XU, C F LI, X Y XU. Experimental characterization of entanglement dynamics in noisy channel. Physical Review Letters, 103, 240502(2009).

    [34] J G LI, J ZOU, B SHAO. Entanglement evolution of two qubits under noisy environments. Physical Review A, 82, 042318(2010).

    [35] Qing-hong LIAO, Zhi-wei LIU, Shuo YUAN. . Dynamics and transfer of entanglement between two jaynes-cummings atoms. Acta Photonica Sinica, 45, 0327002(2016).

    [36] Wei HAN, Wen-kai CUI, Ying-jie ZHANG. . Comparison of entanglement decay between Bell-likestates under different environmental model. Acta Physica Sinica, 61, 230302(2012).

    [37] M A NIELSEN, I L CHUANG. Quantum computation and quantum information. UK(2000).

    [38] W K WOOTERS. Entanglement of formation of an arbitrary state of two qubits. Physical Review Letters, 80, 2245-2248(1998).

    Xin-wen WANG, Hui-min ZHANG, Ke LIU, Yan LIU. Dependence of Bipartite Entanglement on Qubit-basis in the Amplitude-damping Environment[J]. Acta Photonica Sinica, 2020, 49(10): 1027002
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