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Local-field effect in atom optics of two-component Bose-Einstein condensates

机译:两组分玻色-爱因斯坦凝聚物原子光学中的局部场效应

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Starting from the first principles of nonrelativistic QED we have developed the quantum theory of the interaction of a two-component ultracold atomic ensemble with the electromagnetic field of vacuum and laser photons. The main attention has been paid to the consistent consideration of dynamical dipole-dipole interactions in the radiation field. Taking into account local-field effects we have derived the system of Maxwell-Bloch equations. Optical properties of the two-component Bose gas are investigated. It is shown that the refractive index of the gas is given by the Maxwell-Garnett formula. All equations which are used up to now for the description of the behavior of an ultracold atomic ensemble in a radiation field can be obtained from our general system of equations in the low-density limit. Raman-Nath diffraction of the two-component atomic beam is investigated on the basis of our general system of equations. [References: 42]
机译:从非相对论量子力学的第一原理开始,我们发展了一种双组分超冷原子团与真空和激光光子的电磁场相互作用的量子理论。主要注意力集中在辐射场中动态偶极-偶极相互作用的一致考虑上。考虑到局部场效应,我们导出了麦克斯韦-布洛赫方程组。研究了两组分玻色气体的光学性质。结果表明,气体的折射率由麦克斯韦-加纳特公式给出。到目前为止,用于描述超冷原子团在辐射场中的行为的所有方程都可以从我们在低密度极限下的一般方程组中获得。在我们一般的方程组的基础上研究了两组分原子束的拉曼-纳特衍射。 [参考:42]

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