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Fluid description of the cooperative scattering of light by spherical atomic clouds

机译:球形原子云协同散射光的流体描述

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When a cold atomic gas is illuminated by a quasi-resonant laser beam, light-induced dipole-dipole correlations make the scattering of light a cooperative process. Once a fluid description is adopted for the atoms, many scattering properties are captured by the definition of a complex refractive index. The solution of the scattering problem is here presented for spherical atomic clouds of arbitrary density profiles, such as parabolic densities characteristic of ultra-cold clouds. A new solution for clouds with infinite boundaries is derived, which is particularly useful for the Gaussian densities of thermal atomic clouds. The presence of Mie resonances, a signature of the cloud acting as a cavity for the light, is discussed. These resonances leave their fingerprint in various observables such as the scattered intensity or in the radiation pressure force, and can be observed by tuning the frequency of the incident laser field or the atom number.
机译:当冷原子气体被准谐振激光束照射时,光诱导的偶极-偶极相关使光的散射成为一个协同过程。一旦对原子采用了流体描述,就可以通过定义复折射率来捕获许多散射特性。在此,针对任意密度分布的球形原子云,例如超冷云的抛物线密度,提出了散射问题的解决方案。推导了具有无限边界的云的新解决方案,这对于热原子云的高斯密度特别有用。讨论了Mie共振的存在,Mie共振是充当光腔的云的特征。这些共振以各种可观察到的形式留下它们的指纹,例如散射强度或辐射压力,并且可以通过调整入射激光场的频率或原子数来观察。

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