Dynamic Characteristics of Quantum Fisher Information ofAtomic System in Amplitude Damping Channel
GUO Xiuli,ZHANG Yanliang,ZHOU Qingping
(1.College of Physics and Electromechanical Engineering,Jishou University,Jishou 416000,Hunan China;2.College of Software and Service Outsourcing,Jishou University,Zhangjiajie 427000,Hunan China)
GUO Xiuli,ZHANG Yanliang,ZHOU Qingping. Dynamic Characteristics of Quantum Fisher Information ofAtomic System in Amplitude Damping Channel[J]. Journal of Jishou University(Natural Sciences Edition), DOI: 10.3969/j.cnki.jdxb.2017.04.005.
[1] HOLEVO A.Probabilistic and Statistical Aspects of Quantum Theory[M].Amsterdan:Springer,2011:221-225.
[2] ZHENG Qiang,YAO Yao,LI Yong.Optimal Quantum Channel Estimation of Two Interacting Qubits Subject to Decoherence[J].European Physical Journal D,2014,68(6):1-7.
[3] TSANG MANKEI.Quantum Transition-Edge Detectors[J].Phys. Rev. A,2013.DOI:10.1103/ PhysRevA.88.021801.
[4] FANCHINI F F,WERLANG T,BRASIL C A,et al.Non-Markovian Dynamics of Quantum Discord[J].Phys. Rev. A,2010.DOI:10.1103/PhysRevA.81.052107.
[5] MA Jian,HUANG Yixiao,WANG Xiaoguang,et al.Quantum Fisher Information of the Greenberger -Horne-Zeilinger State in Decoherence Channels[J].Phys.Rev.A,2011.DOI:10.1103/ PhysRevA.84.022302.
[6] 王国友,夏湘芳,彭柯铭,等.量子退相位通道中量子Fisher信息动力学[J].湖南工业大学学报,2015(1):98-101.
[7] EROL V.Quantum Fisher Information of W and GHZ State Superposition Under Decoherence[EB].(22 Apr. 2017).arXiv:1704.07367 [quant-ph].
[8] SAHA A,TALUKDAR B,CHATTERJEE S.Fisher Information for Quasi-One-Dimensional Hydrogen Atom[EB].(10 Mar 2017).arXiv:1703.03578 [cond-mat.stat-mech].
[9] HELSTROM C W.Quantum Detection and Estimation Theory[J].Journal of Statistical Physics,1969,1(2):231-252.
[10] HOLEVO A S,BALLENTINE L E.Probabilistic and Statistical Aspects of Quantum Theory[M].North-Hollan,1982.