Kubanek A, Ourjoumtsev A, Schuster I, Koch M, Pinkse P W H, Murr K, Rempe G
Max-Planck-Institut für Quantenoptik, Hans-Kopfermann-Strasse 1, D-85748 Garching, Germany.
Phys Rev Lett. 2008 Nov 14;101(20):203602. doi: 10.1103/PhysRevLett.101.203602. Epub 2008 Nov 13.
Single atoms absorb and emit light from a resonant laser beam photon by photon. We show that a single atom strongly coupled to an optical cavity can absorb and emit resonant photons in pairs. The effect is observed in a photon correlation experiment on the light transmitted through the cavity. We find that the atom-cavity system transforms a random stream of input photons into a correlated stream of output photons, thereby acting as a two-photon gateway. The phenomenon has its origin in the quantum anharmonicity of the energy structure of the atom-cavity system. Future applications could include the controlled interaction of two photons by means of one atom.
单个原子逐个光子地吸收和发射来自共振激光束的光。我们表明,与光学腔强耦合的单个原子能够成对地吸收和发射共振光子。在对透过该腔的光进行的光子关联实验中观察到了这种效应。我们发现,原子 - 腔系统将随机的输入光子流转换为相关的输出光子流,从而起到双光子通道的作用。该现象源于原子 - 腔系统能量结构的量子非谐性。未来的应用可能包括借助单个原子实现两个光子的可控相互作用。