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Atom–field entanglement in the Jaynes Cummings model without rotating wave approximation 被引量:3
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作者 M.Mirzaee M.Batavani 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第4期70-75,共6页
In this paper, we present a structure for obtaining the exact eigenfunctions and eigenvalues of the Jaynes-Cummings model (JCM) without the rotating wave approximation (RWA). We study the evolution of the system i... In this paper, we present a structure for obtaining the exact eigenfunctions and eigenvalues of the Jaynes-Cummings model (JCM) without the rotating wave approximation (RWA). We study the evolution of the system in the strong coupling region using the time evolution operator without RWA. The entanglement of the system without RWA is investigated using the Von Neumann entropy as an entanglement measure. It is interesting that in the weak coupling regime, the population of the atomic levels and Von Neumann entropy without RWA model shows a good agreement with the RWA whereas in strong coupling domain, the results of these two models are quite different. 展开更多
关键词 atom-photon interaction Jaynes--Cummings model quantum entanglement
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Analytical approach to dynamics of transformed rotating-wave approximation with dephasing
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作者 M.Mirzaee N.Kamani 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第9期409-414,共6页
We study the dynamics of the Jaynes-Cummings model within transformed rotating-wave approximation (TRWA). We analyze this model coupled to a dephasing reservoir, through the Lindblad formalism in the master equation... We study the dynamics of the Jaynes-Cummings model within transformed rotating-wave approximation (TRWA). We analyze this model coupled to a dephasing reservoir, through the Lindblad formalism in the master equation. Then, we examine the expectation value of the number operator. Finally, we investigate the validity of this model under dephasing using the Mandel parameter and the total number of quanta. 展开更多
关键词 atom-photon interaction Jaynes-Cummings model Mandel parameter
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基于微米空心波导的单粒子高效探测
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作者 张鹏飞 李刚 张天才 《光学学报》 EI CAS CSCD 北大核心 2020年第3期177-182,共6页
提出一种用于高效率收集单粒子荧光的锥形空心波导探针。在理论上采用数值模拟得到了锥形空心波导探针对单粒子荧光的收集效率。通过优化探针几何尺寸可得,单粒子为径向偏振时探针对单粒子荧光的收集效率最高为25.3%,普遍高于利用高数... 提出一种用于高效率收集单粒子荧光的锥形空心波导探针。在理论上采用数值模拟得到了锥形空心波导探针对单粒子荧光的收集效率。通过优化探针几何尺寸可得,单粒子为径向偏振时探针对单粒子荧光的收集效率最高为25.3%,普遍高于利用高数值孔径透镜的传统方法。综合发光粒子不同方向的偏振后可知,探针的平均收集效率可达21.7%,最优工作距离为0.75μm。此外,探针对单个粒子荧光的收集效率和工作距离对于粒子发射光的波长不敏感,故此探针可以用于对具有不同波长的各类粒子和宽谱发光粒子的高效率探测。此探针直径为微米量级,易于与其他微纳结构结合。此探针可用于单原子、单分子、量子点、金刚石色心等粒子的高效率探测,并有望进一步用于化学、生物微小发光体等的探测。 展开更多
关键词 量子光学 单粒子探测 空心波导 光与原子相互作用
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