Shohini Ghose and Barry C. Sanders. Non-Gaussian states for continuous variable quantum computation via Gaussian maps[J]. Journal of Modern Optics, 2007,54: 855-869 [2] Yan Wei, Zhang Yingjie. Teleportation of two-mode squeezed vacuum states [J]. Chinese Journal of Quantum Electronics, 2014, 31(3):312-317 [3] Grosshans F, Grangier P. Continuous Variable Quantum Cryptography Using Coherent States[J]. Physical Review Letters, 2002, 88:057902 -05 [4] Takeoka M, Ban M, and Sasaki M. Quantum channel of continuous variable teleportation and nonclassicality of quantum states[J]. Journal of Optics B, 2002,4: 114 [5] Eisert J, Scheel S and Plenio M B. Distilling Gaussian States with Gaussian Operations is Impossible[J]. Physical Review Letters, 2002, 89: 137903-06 [6] Giedke G and Cirac J I. Characterization of Gaussian operations and distillation of Gaussian states[J]. Physical Review A., 2002, 66: 032316-032322 [7] Fiurasek J. Gaussian Transformations and Distillation of Entangled Gaussian States[J]. Physical Review Letters, 2002, 89: 137904 -07 [8] Wenger J, Tualle-Brouri R, and Grangier P. Non-Gaussian Statistics from Individual Pulses of Squeezed Light[J]. Physical Review Letters, 2004,92: 153601-04 [9] Kim M S. Recent developments in photon-level operations on travelling light fields[J]. Journal of Physics B, 2008, 41: 133001 [10] Hu L Y and Fan H Y. Statistical properties of photon-subtracted squeezed vacuum in thermal environment[J]. Journal of the Optical Society of America B 2008, 25: 1955-1964 [11] Olivares S, Paris M G A, andBonifacio R. Teleportation improvement by inconclusive photon subtraction[J], Physical Review A, 2003,67: 032314-032318 [12] Ourjoumtsev A, et al. Increasing Entanglement between Gaussian States by Coherent Photon Subtraction[J]. Physical Review Letters, 2007, 98: 030502-04 [13] Lee Ching Tsung. Two-mode squeezed states with thermal noise[J]. Physical Review A, 1990,42:4193-4198 [14] Horhammer C, Buttner H. Environment-induced two-mode entanglement in quantum Brownian motion[J]. Physical Review A, 2008, 77: 042305- 042313 [15] Xiang S H, Song K H, Wen W, and Shi Z.-G. Entanglement behaviors of two-mode squeezed thermal states in two different environments[J]. The European Physical Journal D, 2011, 62: 289-296 [16] Zhang Kefu, Wang Zhongjie. The light field properties in the system of thermal radiation interacting with entangled atoms[J].Journal of Anhui Normal University ( Natural Science),2007,30(6): 654-658 张克福,王中结,在纠缠原子与热光场相互作用系统中光场的特性,安徽师大学报(自然版),2007,30(6),654-658 [17] XIANG Shao-Hua, SONG Ke-Hui, WEN Wei, and SHI Zhen-Gang. Quantum Entanglement and Nonlocality Properties of Two-Mode Squeezed Thermal States in a Common-Reservoir Model[J]. Communications in Theoretical Physics, 2011, 55: 232-238. [18] Hu Li-Yun and Zhang Zhi-Ming. Statistical properties of coherent photon-added two-mode squeezed vacuum and its inseparability [J]. Journal of the Optical Society of America B, 2013, 30: 518 -529 [19] Mandel L. Sub-Poissonian photon statistics in resonance fluorescence[J]. Optics Letters,1979, 4:205. [20] Zhang Kefu and Wang Zhongjie. Generation and Properties of Two-Mode Circular States[J]. Communications in Theoretical Physics, 2008,50(5): 1101-1105. |