Perrin A, Chang H, Krachmalnicoff V, Schellekens M, Boiron D, Aspect A, Westbrook C I
Laboratoire Charles Fabry de l'Institut d'Optique, CNRS, Univ Paris-Sud, Campus Polytechnique, RD128, 91127 Palaiseau cedex, France.
Phys Rev Lett. 2007 Oct 12;99(15):150405. doi: 10.1103/PhysRevLett.99.150405.
We study atom scattering from two colliding Bose-Einstein condensates using a position sensitive, time resolved, single atom detector. In analogy to quantum optics, the process can also be thought of as spontaneous, degenerate four-wave mixing of de Broglie waves. We find a clear correlation between atoms with opposite momenta, demonstrating pair production in the scattering process. We also observe a Hanbury Brown-Twiss correlation for collinear momenta, which permits an independent measurement of the size of the pair production source and thus the size of the spatial mode. The back-to-back pairs occupy very nearly two oppositely directed spatial modes, a promising feature for future quantum optics experiments.
我们使用位置灵敏、时间分辨的单原子探测器研究了两个相互碰撞的玻色-爱因斯坦凝聚体中的原子散射。类似于量子光学,该过程也可被视为德布罗意波的自发简并四波混频。我们发现具有相反动量的原子之间存在明显的相关性,这表明在散射过程中产生了原子对。我们还观察到共线动量的汉伯里·布朗-特威斯相关性,这使得能够独立测量原子对产生源的大小,进而测量空间模式的大小。背对背的原子对几乎占据两个相反方向的空间模式,这对未来的量子光学实验来说是一个很有前景的特性。