Staanum Peter, Kraft Stephan D, Lange Jörg, Wester Roland, Weidemüller Matthias
Physikalisches Institut, Universität Freiburg, Hermann-Herder-Strassee 3, 79104 Freiburg, Germany.
Phys Rev Lett. 2006 Jan 20;96(2):023201. doi: 10.1103/PhysRevLett.96.023201. Epub 2006 Jan 19.
Ultracold collisions between Cs atoms and Cs2 dimers in the electronic ground state are observed in an optically trapped gas of atoms and molecules. The Cs2 molecules are formed in the triplet ground state by cw photoassociation through the outer well of the 0-(g) (P3/2) excited electronic state. Inelastic atom-molecule collisions converting internal excitation into kinetic energy lead to a loss of Cs2 molecules from the dipole trap. Rate coefficients are determined for collisions involving Cs atoms in either the F=3 or F=4 hyperfine ground state, and Cs2 molecules in either highly vibrationally excited states (nu'=32-47) or in low vibrational states (nu'=4-6) of the a3 summation(u)+ triplet ground state. The rate coefficients beta approximately 10(-10) cm3/s are found to be largely independent of the vibrational and rotational excitation indicating unitary limited cross sections.
在原子和分子的光阱气体中观察到处于电子基态的铯原子与 Cs₂ 二聚体之间的超冷碰撞。通过连续光缔合,Cs₂ 分子在 0-(g) (P3/2) 激发电子态的外阱中形成三重态基态。将内部激发转化为动能的非弹性原子 - 分子碰撞导致 Cs₂ 分子从偶极阱中损失。确定了涉及处于 F = 3 或 F = 4 超精细基态的铯原子以及处于 a3Σ(u)+ 三重态基态的高振动激发态(ν' = 32 - 47)或低振动态(ν' = 4 - 6)的 Cs₂ 分子的碰撞速率系数。发现速率系数 β 约为 10⁻¹⁰ cm³/s,在很大程度上与振动和转动激发无关,表明是单一极限截面。