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Kerr效应对二项式腔场谱量子干涉的影响
引用本文:李悦科,张桂明,高云峰. Kerr效应对二项式腔场谱量子干涉的影响[J]. 物理学报, 2010, 59(9): 6178-6184
作者姓名:李悦科  张桂明  高云峰
作者单位:聊城大学传媒技术学院,聊城 252059
基金项目:国家自然科学基金(批准号:10574060)和山东省自然科学基金(批准号:ZR2009AM019)资助的课题.
摘    要:研究了含Kerr介质高Q腔内单个二能级原子与双模二项式光场发生双光子共振相互作用系统的腔场谱,给出了Kerr效应与量子干涉项ΔS(ω)关系的数值计算结果,讨论了Kerr效应对二项式腔场谱量子干涉的影响.结果表明:若初始时刻原子处于激发态而双模光场处于二项式态,随Kerr效应的增强,致使量子干涉项引起谱线强度的改变量呈现出"不规则的周期性衰减振荡"特性,震荡幅度与两模光场的频差密切相关.在Kerr系数χg(g为光场与原子的耦合常数)时,Kerr效应对干涉项的影响比较强烈;在χg时,趋于平稳.随着Kerr效应的增强,系统腔场谱由对称结构逐渐演化为不对称的多谱线结构.

关 键 词:腔场谱  量子干涉  Kerr效应  二项式光场
收稿时间:2009-10-21

Influence of Kerr-effect on the quantum interference of the cavity field spectrum within two mode binomial initial field
Li Yue-Ke,Zhang Gui-Ming,Gao Yun-Feng. Influence of Kerr-effect on the quantum interference of the cavity field spectrum within two mode binomial initial field[J]. Acta Physica Sinica, 2010, 59(9): 6178-6184
Authors:Li Yue-Ke  Zhang Gui-Ming  Gao Yun-Feng
Affiliation:School of Medium and Communications, Liaocheng University Liaocheng 252059,China;School of Medium and Communications, Liaocheng University Liaocheng 252059,China;School of Medium and Communications, Liaocheng University Liaocheng 252059,China
Abstract:The cavity field spectrum of the nondegenerate two-photon Jayners-Cummings model with an additional Kerr medium is investigated. The results for the initial fields in binomial states are presented. The influence of the Kerr effect on the quantum interference of the two mode cavity field spectra is discussed. It is found that the quantum interference item shows a periodical damped oscillation irregularly when the Kerr effect is increased. The amplitude of the oscillation relate to the difference of the two field frequencies intimately. When the Kerr coefficient χ (g is coupling coefficient between atom and the fields), the change of the quantum interference item is strong with χ. And when χ>g, it is weakly. The cavity field spectra usually take on a complex asymmetric structure with many peaks when Kerr coefficient is large.
Keywords:cavity field spectrum  quantum interference  Kerr-effect  binomial state field
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