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Dynamical observations of self-stabilizing stationary light

机译:自稳定静止光的动力学观测

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The precise control of atom-light interactions is vital to many quantum technologies. For instance, atomic systems can be used to slow and store light, acting as a quantum memory. Optical storage can be achieved via stopped light, where no optical energy continues to exist in the atomic system, or as stationary light, where some optical energy remains present during storage. Here, we demonstrate a form of self-stabilizing stationary light. From any initial state, our atom-light system evolves to a stable configuration that may contain bright optical excitations trapped within the atomic ensemble. This phenomenon is verified experimentally in a cloud of cold Rb-87 atoms. The spinwave in our atomic cloud is imaged from the side, allowing direct comparison with theoretical predictions.
机译:原子-光相互作用的精确控制对许多量子技术至关重要。例如,原子系统可用于减慢和存储光,充当量子存储器。光存储可以通过停止光来实现,其中原子系统中没有光能继续存在,或者作为静止光,在存储过程中仍然存在一些光能。在这里,我们展示了一种自稳定静止光的形式。从任何初始状态,我们的原子光系统都会演变成一种稳定的构型,其中可能包含被困在原子系综中的明亮光学激发。这种现象在冷Rb-87原子云中得到了实验验证。我们原子云中的自旋波是从侧面成像的,可以与理论预测直接比较。

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