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Induced Dipole-Dipole Coupling Between Two Atoms At A Migration Resonance

机译:在迁移共振的两个原子之间引起偶极偶极偶联

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摘要

Results of numerical simulations for the resonant energy exchange phenomenon called Migration reaction between two cold Rydberg atoms are presented. The effect of spatial interatomic distance on the onset of peculiar coherent mechanism is investigated. Observation of Rabi-like population inversion oscillation at the resonance provides a clear signature of dipole induced exchange of electronic excitations between the atoms. Further we present the results for the dependence of expectation value of the interaction hamiltonian on the interatomic distance, which is responsible for energy exchange process. The results of this observation endorse the range of inter atomic distance within which the excitation exchange process occurs completely or partially. Migration process enhance the Rydberg-Rydberg interaction in the absence of an external field, under the condition of the zero permanent dipole moments. Our next observation sheds light on the fundamental mechanism of induced electric fields initiated by the oscillating dipoles in such energy exchange processes. We explore the dependence of induced electric field on the interatomic distance and angle between the dipoles highlighting the inverse power law dependence and anisotropic property of the field. We put forward an idea to utilise the coherent energy exchange process to build efficient and fast energy transfer channels by incorporating more atoms organised at successive distances with decreasing distance gradient.
机译:介绍了两个冷梁霉原子之间称为迁移反应的谐振能量交换现象的数值模拟结果。研究了空间间隙距离对特殊相干机制开始的影响。在共振中观察Rabi群体反转振荡提供了偶极子诱导原子之间的电子激发交换的明显签名。此外,我们介绍了相互作用汉密尔顿人对网状距离的期望值的依赖性的结果,这负责能量交流过程。该观察结果的结果赞助激励交换过程的帧间距离完全或部分地发生。在零永久性偶极矩的情况下,迁移过程在没有外部场的情况下提高rydberg-rydberg相互作用。我们的下一个观察揭示了在这种能量交流过程中由振荡偶极子发起的诱导电场的基本机制。我们探讨了诱导的电场对倾子之间的倾向距离和角度的依赖性,突出了该场的逆动力律依赖性和各向异性特性。我们提出了一种想法来利用相干能量交换过程来通过在连续距离下组织以减少距离梯度来构建高效和快速的能量传递通道。

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