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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Microscopic theory of the interaction of ultracold dense Bose and Fermi gases with an electromagnetic field
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Microscopic theory of the interaction of ultracold dense Bose and Fermi gases with an electromagnetic field

机译:超冷致密玻色和费米气体与电磁场相互作用的微观理论

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摘要

We present the rigorous microscopic quantum theory of the interaction of ultracold Bose and Fermi gases with the electromagnetic field of vacuum and laser photons. The main attention has been paid to the consistent consideration of dynamical dipole-dipole interactions. The theory developed is shown to be consistent with the general principles of the canonical quantization of an electromagnetic field in a medium. Starting from the first principles of QED we have derived the general system of Maxwell-Bloch equations for atomic creation and annihilation operators and the propagation equation for the laser field which can be used for the self-consistent analysis of various linear and nonlinear phenomena in atom optics at high densities of the atomic system. All known equations, which are used 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 a low-density limit. [References: 16]
机译:我们提出了超冷的玻色和费米气体与真空和激光光子的电磁场相互作用的严格的微观量子理论。主要注意力集中在对动力学偶极-偶极相互作用的一致考虑上。所开发的理论表明与介质中电磁场的规范化量化的一般原理一致。从QED的第一个原理开始,我们推导了用于原子创建和operators灭算子的Maxwell-Bloch方程的一般系统以及激光场的传播方程,这些方程可用于自洽分析原子中的各种线性和非线性现象高密度原子系统的光学。所有已知的用于描述超冷原子团在辐射场中的行为的方程,都可以从我们的低密度极限方程组中获得。 [参考:16]

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