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Origination of Entangled States upon Interaction of Atoms with Narrow-Band Light

机译:原子与窄带光相互作用时纠缠态的起源

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Generation and transformation of entangled states in a system of two-level atoms with relaxation interacting with light are considered. It is found that excitation by single-mode squeezed light produces mixed atomic states that prove to be nonseparable. For the field in the Fock state, there may arise Greenberger-Horne-Zeilinger states comprised of atoms and photons. On the basis of the exact solutions of the multiparticle problem, the generation and transformation of atomic states of the W class, including recording of the photon state, are discussed.
机译:考虑了在具有弛豫与光相互作用的两能级原子系统中纠缠态的产生和转化。发现单模压缩光激发产生的混合原子态被证明是不可分离的。对于Fock态的场,可能会出现由原子和光子组成的Greenberger-Horne-Zeilinger态。在多粒子问题的精确解的基础上,讨论了W类原子态的产生和转换,包括光子态的记录。

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