Osnaghi S, Bertet P, Auffeves A, Maioli P, Brune M, Raimond J M, Haroche S
Laboratoire Kastler Brossel, Département de Physique de l'Ecole Normale Supérieure, 24 rue Lhomond, F-75231, Paris Cedex 05, France.
Phys Rev Lett. 2001 Jul 16;87(3):037902. doi: 10.1103/PhysRevLett.87.037902. Epub 2001 Jun 27.
Following a recent proposal by S. B. Zheng and G. C. Guo [Phys. Rev. Lett. 85, 2392 (2000)], we report an experiment in which two Rydberg atoms crossing a nonresonant cavity are entangled by coherent energy exchange. The process, mediated by the virtual emission and absorption of a microwave photon, is characterized by a collision mixing angle 4 orders of magnitude larger than for atoms colliding in free space with the same impact parameter. The final entangled state is controlled by adjusting the atom-cavity detuning. This procedure, essentially insensitive to thermal fields and to photon decay, opens promising perspectives for complex entanglement manipulations.
根据S. B. 郑和平和G. C. 郭最近的一项提议[《物理评论快报》85, 2392 (2000)],我们报告了一个实验,其中两个穿过非共振腔的里德堡原子通过相干能量交换而纠缠在一起。该过程由微波光子的虚拟发射和吸收介导,其特征是碰撞混合角比具有相同碰撞参数的自由空间中碰撞的原子大4个数量级。通过调整原子 - 腔失谐来控制最终的纠缠态。该过程基本上对热场和光子衰变不敏感,为复杂的纠缠操纵开辟了有前景的前景。