共查询到19条相似文献,搜索用时 46 毫秒
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原子相干效应是相干电磁场与原子相互作用的产物,在量子光学领域有重要的研究价值.许多重要的物理现象都是由原子相干效应引起的.文章介绍了基于原子相干效应的电磁感应光透明、相干烧孔、双暗态、真空感应相干、部分受激拉曼绝热过程的光存储、光信息在不同通道之间的转换与擦除等现象的理论和实验研究,并简单介绍了它们的应用价值. 相似文献
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原子相干效应是光与物质相互作用的结果,它导致了一系列重要的物理现象。目前原子相干的实验研究工作主要在原子气体中开展,而与之相比固体材料中的相关实验研究具有更实际的应用前景。本文系统介绍了近年来固体材料中原子相干效应的研究进展,主要涉及电磁感应光透明、光速减慢与相干存储、存储光信息的可控制擦除、基于光存储的全光路由、双光脉冲的速度减慢和可逆存储和基于原子相干的增强四波混频等基本内容,最后还讨论了其在相关领域的应用。 相似文献
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研究了利用原子玻色-爱因斯坦凝聚体与光相互作用产生受激Raman跃迁制备的原子激光二阶相干性质。结果表明,这种原子激光是反聚束的,在一定条件下,是二阶相干的。 相似文献
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研究了利用原子玻色-爱因斯坦凝聚体与制备的原子激光的二阶相干性质. 结果表明,这种原子激光是反聚束的,在一定条件下,是二阶相干的. 相似文献
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为了提高光信息处理元件的性能,实现高效率光信号的静止与存储,本文建立了由双向耦合场耦合的冷铷(87Rb)原子的四能级双Λ型能级机制,并对此机制在生成静态光信号时要求的高效性、持续时间,控制耦合场所需的操作条件以及对信号场强度的相位调制等进行了研究。首先,选取四能级双Λ型87Rb冷原子精细能级,用一对反向传播的行波激光场对能级进行近共振耦合,并沿耦合场方向输入一个正向弱光信号进行探测。接着,通过适当的绝热开启、关闭耦合场,存储光信号和生成高保真度静态光信号。然后,通过选取87Rb原子的不同精细能级结构,得出实现静态光所需满足的必要条件。最后,采用相位调制法对光信号进行处理。结果表明:生成的静态光信号具有高效性,过程持续时间约为80μs;相位调制法可以周期调节静态光脉冲的强度。在此机制下生成的静态光信号满足高效性、易于全光调节和长时效性等要求。 相似文献
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Two-photon resonant nondegenerate four-wave mixing (NFWM) with the
addition of a coupling field in Ba atomic vapour has been studied. We
find that coherence of the atomic level transitions leads to
suppression of the NFWM signal, giving rise to a dip with a linewidth
that is linearly proportional to the intensity of the coupling field. 相似文献
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《Physics letters. A》2003,307(4):196-201
An open Λ-type three-level atom in a photonic crystal can become nearly transparent to a resonant probe field even if the density of modes (DOM) has no mathematical singularity. A high-Q defect mode can induce perfect coherent population trapping. The role of singularity/smoothness of DOM is analyzed. 相似文献
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The influence of atomic coherence effects on the statistical and spectral properties of the ion-trap laser is investigated. Various pump configurations are considered for a realistic level scheme using a Ca
ion. Compared to previous suggestions, 50% more output is obtained. 相似文献
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Hoonsoo Kang Yifu Zhu Young-Gi Kim Cha-Hwan Oh Young-Ho Park Ho Seong Lee 《Optics Communications》2006,260(2):442-448
The population difference between ground states F = 4 and F = 3 is calculated for Cs atoms pumped on the D2 line by a resonant laser beam. The pumping efficiency for Cs atoms in a static magnetic field on two hyperfine transitions (6S1/2 F = 4 → 6P3/2 F′ = 3 and F′ = 4) is calculated for various pump laser intensities. The population difference as a function of the static magnetic field exhibits a dip centered at the zero magnetic field, which corresponds well with the Zeeman coherence between sublevels of the F = 4 state. The full-width at half-maximum (FWHM) of the dip as a function of the pump laser intensity shows abnormal power broadening behavior that differs for different hyperfine transitions. We present experimental results that agree with the theoretical calculations. 相似文献
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Considering two identical two-level atoms interacting
with a single-mode thermal
field through two-photon processes,
this paper studies the atomic coherence control on the
entanglement between two two-level atoms,
and finds that the entanglement is greatly
enhanced due to the initial atomic coherence. The results show
that the entanglement can be manipulated
by changing the initial
parameters of the system, such as the superposition coefficients
and the relative phases
of the initial atomic coherent state and the mean photon
number of the cavity field. 相似文献