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Interplay of classical and quantum dynamics in a thermal ensemble of atoms

机译:原子热集成中经典动力学和量子动力学的相互作用

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摘要

In a thermal ensemble of atoms driven by coherent fields, how does evolution of quantum superposition compete with classical dynamics of optical pumping and atomic diffusion? Is it optical pumping that first prepares a thermal ensemble, with coherent superposition developing subsequently or is it the other way round: coherently superposed atoms driven to steady state via optical pumping? Using a stroboscopic probing technique, here we experimentally explore these questions. A 100 ns pulse is used to probe an experimentally simulated, closed three-level, Λ-like configuration in rubidium atoms, driven by strong coherent (control) and incoherent fields. Temporal evolution of probe transmission shows an initial overshoot with turn-on of control, resulting in a scenario akin to lasing without inversion. The corresponding rise time is dictated by coherent dynamics, with a distinct experimental signature of half-cycle Rabi flop in a thermal ensemble of atoms. Our results indicate that, in fact, optical pumping drives the atoms to a steady state in a significantly longer time-scale that sustains superposed dark states. Eventual control turn-off leads to a sudden fall in transmission with an ubiquitous signature for identifying closed and open systems. Numerical simulations and toy-model predictions confirm our claims. These studies reveal new insights into a rich and complex dynamics associated with atoms in thermal ensemble, which are otherwise absent in state-prepared, cold atomic ensembles.
机译:在由相干场驱动的原子的热集成中,量子叠加的演化如何与光泵浦和原子扩散的经典动力学相竞争?是先准备光热泵浦,然后发展相干叠加的光泵浦,还是相反:通过光泵浦将相干叠加的原子驱动到稳态?在这里,我们使用频闪探测技术通过实验探索这些问题。一个100 ns的脉冲用于探测strong原子中由强相干(控制)场和非相干场驱动的,经过实验模拟的,封闭的三能级Λ样构型。探针传输的时间演变显示,在打开控制时会出现初始过冲,从而导致类似于无反转激射的情况。相应的上升时间由相干动力学决定,在原子的热集成中具有半周期Rabi flop的独特实验特征。我们的结果表明,实际上,光泵浦会在更长的时间范围内将原子驱动到稳态,并维持叠加的暗态。最终的控制关闭会导致传输突然下降,并带有用于识别封闭和开放系统的普遍签名。数值模拟和玩具模型预测证实了我们的主张。这些研究揭示了与热集合中原子相关的丰富而复杂的动力学的新见解,而在状态准备的冷原子集合中是不存在的。

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