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Entropy evolution properties in a system of two entangled atoms interacting with light field 下载免费PDF全文
In this paper, we use the field entropy as a measurement of the degree of entanglement between the light field and the atoms of the system which is composed of two dipole—dipole interacting two-level atoms initially in an entangled state interacting with the single mode coherent field in a Kerr medium. The influence of the coupling constant of dipole—dipole interaction between atoms and the coupling strength of the Kerr medium with the light field and the intensity of the light field on the field entropy are discussed by numerical calculations. It is shown that when the coupling strength of the Kerr medium with the light field is large enough, and the light field is strong, the degree of entanglement between the atoms with the light field becomes weaker. The degree of entanglement only changes slightly with the change of the coupling constant of dipole—dipole interaction between atoms. 相似文献
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研究了双模腔场中两个偶极相互作用原子的辐射谱,详细讨论了双模腔场分别处于不同数态时的情形,发现其辐射谱具有如下特点:当两模腔场均处于真空态时,随着δ=ga/g的增加,辐射谱交替出现六峰、五峰结构,且在δ(=3-1/2)很小时就出现了非对称五峰结构,与单模双原子情形相比较,更为灵敏地反映出原子间的偶极相互作用;当一腔场为真空场,另一腔场为强场时,辐射谱显示出对称的六峰结构,任意两对称峰的间距与(2n2)1/2g成正比;当
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蛋白质相互作用界面上磷酸酪氨酸的质子化状态对蛋白质相互作用具有重要影响, 在进行相关结构的计算研究时, 必须对其进行准确判定. 采用AMBER/parm99力场和广义波恩(GBobc)隐式水模型, 以SHC1 (src homology 2 domain-containing transforming protein C1)的SH2 (Src homology 2)结构域与磷酸化激活的T细胞受体CD247链的相互作用核磁结构为例, 首次以热力学积分方法对相互作用界面上磷酸酪氨酸的质子化状态进行判定研究, 结果显示该方法计算精确, 判定结果与实验结果一致. 表明该方法不仅为涉及磷酸酪氨酸的蛋白质相互作用的计算结构研究奠定了基础, 在其它具有可电离基团的氨基酸的质子化状态判定中也将具有潜在的推广应用价值. 相似文献
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