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Optical Lattice Polarization Effects on Hyperpolarizability of Atomic Clock Transitions

机译:光学晶格极化对原子钟跃迁的超极化性的影响

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The light-induced frequency shift due to hyperpolarizability (i.e., terms of second-order in intensity) is studied for a forbidden optical transition, J = 0→J = 0. A simple universal dependence on the field ellipticity is obtained. This result allows minimization of the second-order light shift with respect to the field polarization for optical lattices operating at a magic wavelength (at which the first-order shift vanishes). We show the possibility for the existence of a magic elliptical polarization, for which the second-order frequency shift vanishes. The optimal polarization of the lattice field can be either linear, circular, or magic elliptical. The obtained results could improve the accuracy of lattice-based atomic clocks.
机译:研究了由于超极化性(即强度的二阶项)而引起的光诱导频率偏移,它针对一个禁止的光学跃迁J = 0→J =0。获得了对场椭圆率的简单通用依赖性。该结果使得对于在魔术波长下工作的光学晶格(在该一级波长上消失)的光栅的二级偏振光相对于场偏振的最小化。我们显示出存在不可思议的椭圆极化的可能性,对于该极化,二阶频移消失了。晶格场的最佳极化可以是线性,圆形或魔术椭圆形。获得的结果可以提高基于晶格的原子钟的准确性。

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