National Institute of Standards and Technology, Boulder, Colorado 80305, USA.
Phys Rev Lett. 2011 Sep 2;107(10):103902. doi: 10.1103/PhysRevLett.107.103902. Epub 2011 Aug 30.
We study ultracold collisions in fermionic ytterbium by precisely measuring the energy shifts they impart on the atoms' internal clock states. Exploiting Fermi statistics, we uncover p-wave collisions, in both weakly and strongly interacting regimes. With the higher density afforded by two-dimensional lattice confinement, we demonstrate that strong interactions can lead to a novel suppression of this collision shift. In addition to reducing the systematic errors of lattice clocks, this work has application to quantum information and quantum simulation with alkaline-earth atoms.
我们通过精确测量超冷费米子 ytterbium 原子内部时钟状态的能量位移来研究它们的碰撞。利用费米统计,我们揭示了在弱相互作用和强相互作用 regimes 下的 p 波碰撞。通过二维晶格限制提供的更高密度,我们证明强相互作用可以导致这种碰撞位移的新的抑制。除了降低晶格钟的系统误差外,这项工作还可应用于碱土原子的量子信息和量子模拟。