Kokoouline Viatcheslav, Santra Robin, Greene Chris H
Department of Physics, University of Colorado, Boulder, Colorado 80309-0440, USA.
Phys Rev Lett. 2003 Jun 27;90(25 Pt 1):253201. doi: 10.1103/PhysRevLett.90.253201. Epub 2003 Jun 23.
We present a multichannel-scattering calculation of elastic and inelastic cold collisions between two low-field seeking, metastable 88Sr [(5s5p)3P2] atoms in the presence of an external magnetic field. The scattering physics is governed by strong anisotropic long-range interactions, which lead to pronounced coupling among the partial waves of relative motion. As a result, nonadiabatic transitions are shown to trigger a high rate of inelastic losses. At relatively high energies, T>100 microK, the total inelastic collision rate is comparable with the elastic rate. However, at lower collisional energy, the elastic rate decreases, and at T approximately 1 microK, it becomes substantially smaller than the inelastic rate. Our study suggests that magnetic trapping and evaporative cooling of 88Sr [(5s5p)3P2] atoms, as well as 40Ca [(4s4p)3P2], in low-field seeking states will prove difficult to achieve experimentally.
我们给出了在外部磁场存在的情况下,两个处于低场寻找态的亚稳88Sr[(5s5p)3P2]原子之间弹性和非弹性冷碰撞的多通道散射计算结果。散射物理过程由强各向异性长程相互作用主导,这导致相对运动的分波之间出现显著耦合。结果表明,非绝热跃迁会引发很高的非弹性损失率。在相对较高的能量下,T>100微开尔文,总的非弹性碰撞率与弹性率相当。然而,在较低的碰撞能量下,弹性率下降,在T约为1微开尔文时,它变得远小于非弹性率。我们的研究表明,对处于低场寻找态的88Sr[(5s5p)3P2]原子以及40Ca[(4s4p)3P2]原子进行磁囚禁和蒸发冷却,在实验上可能难以实现。