Naval Research Laboratory, Optical Sciences Division, Washington, DC 20375, USA.
Opt Lett. 2012 Jan 15;37(2):142-4. doi: 10.1364/OL.37.000142.
The realization of quantum memory using warm atomic vapor cells is appealing because of their commercial availability and the perceived reduction in experimental complexity. In spite of the ambiguous results reported in the literature, we demonstrate that quantum memory can be implemented in a single cell with buffer gas using the geometry where the write and read beams are nearly copropagating. The emitted Stokes and anti-Stokes photons display cross-correlation values greater than 2, characteristic of quantum states, for delay times up to 4 μs.
利用暖原子蒸汽室实现量子存储具有吸引力,因为它们具有商业可用性,并且实验复杂性降低。尽管文献中报告的结果存在不确定性,但我们证明了使用写入和读取光束近乎共线传播的几何结构,可以在具有缓冲气体的单个单元中实现量子存储。发射的斯托克斯和反斯托克斯光子的交叉相关值大于 2,这是量子态的特征,延迟时间可达 4 μs。