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Quantum Entanglement Dynamics of Two Atoms in Quantum Light Sources
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作者 杨榕灿 李杰 +1 位作者 王军民 张天才 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第9期429-434,共6页
Quantum entanglement dynamics of two Tavis-Cummings atoms interacting with the quantum light sourcesin a cavity is investigated.The results show the phenomenon that the concurrence disappears abruptly in a finite time... Quantum entanglement dynamics of two Tavis-Cummings atoms interacting with the quantum light sourcesin a cavity is investigated.The results show the phenomenon that the concurrence disappears abruptly in a finite time,which depends on the initial atomic states and the properties of squeezed states.We find that there are two decoherencefreestates in squeezed vacuum fields:one is the singlet state,and the other entangled state is the state that combinesboth excited states and ground states with a relative phase being equal to the phase of the squeezed state. 展开更多
关键词 quantum entanglement dynamics CONCURRENCE squeezed vacuum state sudden death
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Combined Effect of Classical Chaos and Quantum Resonance on Entanglement Dynamics
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作者 谭金桃 罗云荣 +1 位作者 周政 海文华 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第7期1-4,共4页
We use linear entropy of an exact quantum state to study the entanglement between internal electronic states and external motional states for a two-level atom held in an amplitude-modulated and tilted optical lattice.... We use linear entropy of an exact quantum state to study the entanglement between internal electronic states and external motional states for a two-level atom held in an amplitude-modulated and tilted optical lattice. Starting from an unentangled initial state associated with the regular 'island' of classical phase space, it is demonstrated that the quantum resonance leads to entanglement generation, the chaotic parameter region results in the increase of the generation speed, and the symmetries of the initial probability distribution determine the final degree of entanglement. The entangled initial states are associated with the classical 'chaotic sea', which do not affect the final entanglement degree for the same initial symmetry. The results may be useful in engineering quantum dynamics for quantum information processing. 展开更多
关键词 of IT in for Combined Effect of Classical Chaos and quantum Resonance on entanglement dynamics on
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Motion-Enhanced Quantum Entanglement in the Dynamics of Excitation Transfer
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作者 宋伟 黄怿晟 +1 位作者 杨名 曹卓良 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第8期212-215,共4页
We investigate the dynamics of entanglement in the excitation transfer through a model consisting of three interacting molecules coupled to environments. It is shown that the entanglement can be further enhanced if th... We investigate the dynamics of entanglement in the excitation transfer through a model consisting of three interacting molecules coupled to environments. It is shown that the entanglement can be further enhanced if the distance between the molecules is oscillating. Our results demonstrate that the motional effect plays a constructive role on quantum entanglement in the dynamics of excitation transfer. This mechanism might provide a useful guideline for designing artificial systems to battle against decoherence. 展开更多
关键词 Motion-Enhanced quantum entanglement in the dynamics of Excitation Transfer
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