Gapped quantum criticality gains long-time quantum correlations

被引:14
作者
Jafari, R. [1 ,2 ]
Akbari, Alireza [1 ,3 ,4 ]
机构
[1] Asia Pacific Ctr Theoret Phys APCTP, Pohang 790784, Gyeongbuk, South Korea
[2] Inst Adv Studies Basic Sci IASBS, Dept Phys, Zanjan 4513766731, Iran
[3] POSTECH, Dept Phys, Pohang 790784, Gyeongbuk, South Korea
[4] POSTECH, Max Planck POSTECH Ctr Complex Phase Mat, Pohang 790784, South Korea
关键词
D O I
10.1209/0295-5075/111/10007
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We show that gapped critical environment could remarkably prevent an enhanced decay of decoherence factor and quantum correlations at the critical point, which is non-trivially different from the ones in a gapless critical environment (Quan H. T. et al., Phys. Rev. Lett., 96 (2006) 140604). The quantum correlations display very fast decaying to their local minimum at the critical point while maximum decaying occurs away from this point. In particular, our results imply that the collapse of the decoherence factor is not an indicator of a quantum phase transition of the environment as opposed to what happens in a gapless criticality. In the weak-coupling regime, the relaxation time, at which the quantum correlations touch rapidly local minima, shows a power-law singularity as a function of the gap. Furthermore, quantum correlations decay exponentially with the second power of the relaxation time. Our results are important for a better understanding and characterisation of the gap critical environment and its ability as entangler in open quantum systems. Copyright (C) EPLA, 2015
引用
收藏
页数:5
相关论文
共 45 条
[1]   Flow of quantum correlations from a two-qubit system to its environment [J].
Aguilar, G. H. ;
Farias, O. Jimenez ;
Valdes-Hernandez, A. ;
Ribeiro, P. H. Souto ;
Davidovich, L. ;
Walborn, S. P. .
PHYSICAL REVIEW A, 2014, 89 (02)
[2]   Environment-induced sudden death of entanglement [J].
Almeida, M. P. ;
de Melo, F. ;
Hor-Meyll, M. ;
Salles, A. ;
Walborn, S. P. ;
Ribeiro, P. H. Souto ;
Davidovich, L. .
SCIENCE, 2007, 316 (5824) :579-582
[3]  
[Anonymous], 2011, QUANTUM PHASE TRANSI
[4]   DENSE CODING BASED ON QUANTUM ENTANGLEMENT [J].
BARENCO, A ;
EKERT, AK .
JOURNAL OF MODERN OPTICS, 1995, 42 (06) :1253-1259
[5]   Quantum physics and computers [J].
Barenco, A .
CONTEMPORARY PHYSICS, 1996, 37 (05) :375-389
[6]  
Bell JS., 1964, Phys Phys Fiz, V1, P195, DOI [10.1103/PhysicsPhysiqueFizika.1.195, DOI 10.1103/PHYSICSPHYSIQUEFIZIKA.1.195, 10.1103/Physics-PhysiqueFizika.1.195]
[7]   Decoherence from spin environment: Role of the Dzyaloshinsky-Moriya interaction [J].
Cheng, W. W. ;
Liu, J. -M. .
PHYSICAL REVIEW A, 2009, 79 (05)
[8]   Decoherence induced by a dynamic spin environment: The universal regime [J].
Cormick, Cecilia ;
Paz, Juan Pablo .
PHYSICAL REVIEW A, 2008, 77 (02)
[9]   Universal decoherence induced by an environmental quantum phase transition [J].
Cucchietti, Fernando Martin ;
Fernandez-Vidal, Sonia ;
Paz, Juan Pablo .
PHYSICAL REVIEW A, 2007, 75 (03)
[10]   Entanglement and the power of one qubit [J].
Datta, A ;
Flammia, ST ;
Caves, CM .
PHYSICAL REVIEW A, 2005, 72 (04)