The entropy squeezing properties for a two-level atom interacting with a two-mode field via two differentcompeting transitions are investigated from a quantum information point of view.The influences of the initial st...The entropy squeezing properties for a two-level atom interacting with a two-mode field via two differentcompeting transitions are investigated from a quantum information point of view.The influences of the initial state of thesystem and the relative coupling strength between the atom and the field on the atomic information entropy squeezingare discussed.Our results show that the squeezed direction and the frequency of the information entropy squeezing canbe controlled by choosing the phase of the atom dipole and the relative competing strength of atom-field,respectively.We find that,under the same condition,no atomic variance squeezing is predicted from the HUR while optimal entropysqueezing is obtained from the EUR,so the quantum information entropy is a remarkable precision measure for theatomic squeezing in the considered system.展开更多
Considering a two-level atom interacting with the competing two-mode field, this paper investigates the entanglement between the two-level atom and the two-mode field by using the quantum reduced entropy, and that bet...Considering a two-level atom interacting with the competing two-mode field, this paper investigates the entanglement between the two-level atom and the two-mode field by using the quantum reduced entropy, and that between the two-mode field by using the quantum relative entropy of entanglement. It shows that the two kinds of entanglement are dependent on the relative coupling strength of atom-field and the atomic distribution, and exhibit the periodical evolution. The maximal atom-field entanglement state can be prepared via the appropriate selection of system parameters and interaction time.展开更多
为解决实振型分解反应谱法采用强迫解耦处理调谐质量阻尼器(tuned mass damper,TMD)减震结构具有非比例的阻尼矩阵及计算精度较差的问题,引入复模态理论,利用复振型在状态空间中的正交性和叠加性,并基于复完全平方组合(complex complete...为解决实振型分解反应谱法采用强迫解耦处理调谐质量阻尼器(tuned mass damper,TMD)减震结构具有非比例的阻尼矩阵及计算精度较差的问题,引入复模态理论,利用复振型在状态空间中的正交性和叠加性,并基于复完全平方组合(complex complete quadratic combination,CCQC)法和反应谱,提出一套适用于剪切型TMD减震结构的复振型分解反应谱方法。为匹配抗震规范,基于复振型的复共轭特性以及参数矩阵与状态方程系数矩阵间的关系,推导出实数形式的标准地震作用表达。通过数值分析比较实振型和复振型2种反应谱法的误差发现,实振型误差大于10%,复振型误差在5%以内。研究表明:复振型方法考虑了非比例阻尼和振型速度的影响,比实振型方法具有更高的计算精度和稳定性。匹配规范形式的标准地震作用表达式,可使用设计反应谱,形式简单易用。展开更多
基金National Natural Science Foundation of China under Grant No:10374025the Education Department of Hunan Province of China under Grant No.06A038
文摘The entropy squeezing properties for a two-level atom interacting with a two-mode field via two differentcompeting transitions are investigated from a quantum information point of view.The influences of the initial state of thesystem and the relative coupling strength between the atom and the field on the atomic information entropy squeezingare discussed.Our results show that the squeezed direction and the frequency of the information entropy squeezing canbe controlled by choosing the phase of the atom dipole and the relative competing strength of atom-field,respectively.We find that,under the same condition,no atomic variance squeezing is predicted from the HUR while optimal entropysqueezing is obtained from the EUR,so the quantum information entropy is a remarkable precision measure for theatomic squeezing in the considered system.
基金supported by the National Natural Science Foundation of China (Grant No 10374025)
文摘Considering a two-level atom interacting with the competing two-mode field, this paper investigates the entanglement between the two-level atom and the two-mode field by using the quantum reduced entropy, and that between the two-mode field by using the quantum relative entropy of entanglement. It shows that the two kinds of entanglement are dependent on the relative coupling strength of atom-field and the atomic distribution, and exhibit the periodical evolution. The maximal atom-field entanglement state can be prepared via the appropriate selection of system parameters and interaction time.