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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Generation of decoherence-free displaced squeezed states of radiation fields and a squeezed reservoir for atoms in cavity QED
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Generation of decoherence-free displaced squeezed states of radiation fields and a squeezed reservoir for atoms in cavity QED

机译:无渗透辐射挤压的辐射般的挤压挤压状态和腔QED中原子的挤压储存器

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摘要

We present a way to engineer an effective anti-Jaynes-Cumming and a Jaynes-Cumming interaction between an atomic system and a single cavity mode and show how to employ it in reservoir engineering processes. To construct the effective Hamiltonian, we analyze the interaction of an atomic system in a Lambda configuration, driven by classical fields, with a single cavity mode. With this interaction, we first show how to generate a decoherence-free displaced squeezed state for the cavity field. In our scheme, an atomic beam works as a reservoir for the radiation field trapped inside the cavity, as employed recently by S. Pielawa et al. [Phys. Rev. Lett. 98, 240401 (2007)] to generate an Einstein-Podolsky-Rosen entangled radiation state in high-Q resonators. In our scheme, all the atoms have to be prepared in the ground state and, as in the cited article, neither atomic detection nor precise interaction times between the atoms and the cavity mode are required. From this same interaction, we can also generate an ideal squeezed reservoir for atomic systems. For this purpose we have to assume, in addition to the engineered atom-field interaction, a strong decay of the cavity field (i. e., the cavity decay must be much stronger than the effective atom-field coupling). With this scheme, some interesting effects in the dynamics of an atom in a squeezed reservoir could be tested.
机译:我们提出了一个方法来设计一种有效的抗杰恩斯 - 卡明和原子系统和单腔模式之间的杰恩斯 - 卡明互动和展示如何运用它在水库工程过程。为了构建有效哈密顿,我们分析的原子系统的拉姆达构造的相互作用,通过经典的场驱动,具有单个腔模。有了这种互动中,我们首先展示如何生成腔场无消相干移位的挤压状态。在我们的方案中,原子束可以作为用于捕获在腔体内部的辐射场的贮存器,如S. Pielawa等人最近使用。 [物理。 rev. lett。 98,240401(2007)]以产生爱因斯坦 - 波多尔斯基 - 罗森在高Q谐振器纠缠辐射状态。在我们的方案中,所有的原子都在地面状态下被制备,并且,作为引用的文章中,都需要既不原子检测也不原子和腔模之间的精确相互作用倍。从这个相同的交互,我们也可以产生原子系统的理想挤压水库。为此目的,我们不得不假设,除了工程改造的原子场相互作用,腔场的强衰减(即,空腔的衰减必须是比有效原子场耦合更强)。用此方案,在一个挤压贮存原子的动力学一些有趣的效果,可以进行测试。

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