首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Electron shelving induced squeezing in fluorescent light emitted by cold He-4 atoms in an optical lattice: Coherent control by a weak axial magnetic field
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Electron shelving induced squeezing in fluorescent light emitted by cold He-4 atoms in an optical lattice: Coherent control by a weak axial magnetic field

机译:电子搁架引起的冷He-4原子在光学晶格中发出的荧光中的压缩:通过弱轴向磁场进行相干控制

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摘要

We report theoretical calculations on the effect of polarization gradient, atomic motion and an axial magnetic field on quantum noise reduction in the resonant fluorescence emitted by a cloud of cold Helium atoms in an optical lattice. The polarization gradient induces squeezing of the electromagnetic field at selected points on the optical lattice, together with a dark resonance in the emitted fluorescence, the origin of which is traced back to electron shelving. We find that the localization of the atoms in the optical lattice destroys squeezing, but can be recovered in the presence of an axial magnetic field. [References: 13]
机译:我们报告有关偏振梯度,原子运动和轴向磁场对光学晶格中冷氦原子云发射的共振荧光的量子噪声降低的影响的理论计算。极化梯度会引起电磁场在光学晶格上选定点的压缩,并在发射的荧光中产生暗共振,其起源可追溯到电子搁架。我们发现,原子在光学晶格中的定位破坏了挤压,但是可以在存在轴向磁场的情况下恢复。 [参考:13]

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