[1] Arveson W. Maximal vectors in Hilbert spaces and quantum entanglement. J Funct Anal, 2009, 256:1476-1510 [2] Augusiak R, Tura J, Lewenstein M. A note on the optimality of decomposable entanglement witnesses and completely entangled subspaces. J Phys A:Math Theor, 2011, 44:212001 [3] Guo Y, Hou J C. Realignment operation and CCNR criterion of separability for states in infinite-dimensional quantum systems. Reports on Mathematical Physics, 2013, 72:25-40 [4] Guo Y, Qi X F, Hou J C. Sufficient and necessary conditions of separability for bipartite pure states in infinite-dimensional systems. Chinese Science Bull, 2011, 56:840-846 [5] Horodecki M, Horodecki P, Horodecki R. Separability of mixed states:necessary and sufficient conditions. Phys Lett A, 1996, 233:1 [6] Horodecki P. Separability criterion and inseparable mixed states with positive partial transposition. Phys Lett A, 1997, 232:333-339 [7] Hou J C, A characterization of positive linear maps and criteria for entangled quantum states. J Phys A:Math Theor, 2010, 43:385201 [8] Hou J C, Guo Y. When different entanglement witesses detect the same entangled states. Phy Rev A, 2010, 82:052301 [9] Hou J C, Guo Y. Constructing entanglement witnesses for states in infinite-dimensional bipartite quantum systems. Int J Theor Phy, 2011, 50:1245-1254 [10] Hou J C, Li C K, Poon X T, et al. A new criterion and a special class of k-positive maps. Lin Alg Appl, 2015, 470:51-69 [11] Hou J C, Qi X F. Constructing entanglement witnesses for infinite-dimensional systems. Phy Rev A, 2010, 81:062351 [12] Hou J C, Wang W L. Constructing entanglement witnesses for infinite-dimensional systems. Int J Theor Phy, 2019, 58:1269-1281 [13] Hou J C, Zhao H L. Positive maps constructed from permutation pairs. Acta Mathematica Scientia, 2019, 39B:1-17 [14] Lewensetein M, Kraus B, Cirac J I, Horodecki P. Optimization of entanglement witness. Phys Rev A, 2001, 62:052310 [15] Nielsen M A, Chuang I L. Quantum Computatation and Quantum Information. Cambridge:Cambridge University Press, 2000 [16] Peres A. Separability criterion for density matrices. Phy Rev Lett, 1996, 77:1413 [17] Qi X F, Hou J C. Detecting entanglement of states by entries of their density matrices. Int J Theor Phy, 2012, 51:2003-2014 [18] Qi X F, Hou J C. Characterization of optimal entanglement witnesses. Phy Rev A, 2012, 85:022334 [19] Qi X F, Hou J C. Optimality of a class of entanglement witnesses for 3⊗3 systems. Int J Theor Phy, 2013, 52:3474-3 [20] Qi X F, Hou J C. Optimality of entanglement witnesses constructed from arbitrary permutations. Quantum Information Processing, 2015, 14:2499-2515 [21] Qi X F, Hou J C. Indecomposability of entanglement witnesses constructed from any permutations. Quantum Information and Computation, 2015, 15:0478-0488 [22] Qi X F, Hou J C. Positive finite rank elementary operators and characterizing entanglement of states. J Phy A:Math Theor, 2011, 44:215305 [23] Rudolph O. Further results on the cross norm criterion for separability. Quantum Information Processing, 2005, 4:219 [24] Størmer E. Separable states and positive maps. J Funct Anal, 2008, 254:2303-2312 [25] Tóth G, Gühne O. Separability criteria and entanglement witnesses for symmetric quantum states. Appl Phy B, 2010, 98:617-622 [26] Wu Y C, Han Y J, Guo G C. When different entanglement witnesses can detect the same entangled states. Phy Lett A, 2006, 356:402-405 [27] Yu S, Liu N L. Entanglement detection by local orthogonal observables. Phy Rev Lett, 2005, 95:150504 [28] Zhao H L, Hou J C. A necessary and sufficient condition for positivity of linear maps on M4 constructed from permutation pairs. Operator and Matrices, 2015, 9(3):597-617 |