首页> 外文期刊>Journal of Russian laser research >WEAK CHAOS WITH COLD ATOMS IN A 2D OPTICAL LATTICE WITH ORTHOGONAL POLARIZATIONS OF LASER BEAMS
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WEAK CHAOS WITH COLD ATOMS IN A 2D OPTICAL LATTICE WITH ORTHOGONAL POLARIZATIONS OF LASER BEAMS

机译:激光束正交偏振的二维光学晶格中具有冷原子的弱混沌

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We study theoretically coherent dynamics of cold atoms in the near-resonant 2D optical lattice with orthogonal polarizations, taking into account a coupling between the atomic internal (electronic) and external (translational) degrees of freedom. We show that in the semiclassical approximation this dynamics may be regular or chaotic in dependence on the values of the detuning between the electric-dipole transition and the laser field frequencies. Chaos manifests itself both in the Rabi oscillations and in the translational motion at comparatively small absolute values of the detuning. The center-of-mass motion in the chaotic regime resembles the random walk of atoms in a 2D lattice which is an absolutely rigid one. Chaos is quantified by the values of the maximal Lyapunov exponent and is shown to be weaker as compared with the case of cold atoms in a 1D lattice. In fact, chaos appears at the time moments when the atom crosses 1D or 2D nodes of the lattice potential when its induced electric dipole moment changes suddenly in a random-like manner.
机译:考虑到原子内部(电子)和外部(平移)自由度之间的耦合,我们研究了具有正交偏振的近共振二维光学晶格中冷原子的理论相干动力学。我们表明,在半经典近似中,取决于电偶极跃迁和激光场频率之间的失谐值,该动力学可能是规则的或混沌的。混沌在拉比振荡和平移运动中都以相对较小的失谐绝对值表现出来。混沌状态下的质心运动类似于原子在2D晶格中的随机游动,这是绝对刚性的。混沌是通过最大Lyapunov指数的值来量化的,与一维晶格中的冷原子相比,混沌更弱。实际上,当原子穿过其偶极矩的感应电偶极矩突然变化时,当原子穿过晶格势的1D或2D节点时,就会出现混沌。

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