Joint Quantum Institute, NIST and the University of Maryland, Gaithersburg, Maryland 20899-8423, USA.
Phys Chem Chem Phys. 2011 Nov 14;13(42):19114-24. doi: 10.1039/c1cp21270b. Epub 2011 Jul 20.
Universal collision rate constants are calculated for ultracold collisions of two like bosonic or fermionic heteronuclear alkali-metal dimers involving the species Li, Na, K, Rb, or Cs. Universal collisions are those for which the short range probability of a reactive or quenching collision is unity such that a collision removes a pair of molecules from the sample. In this case, the collision rates are determined by universal quantum dynamics at very long range compared to the chemical bond length. We calculate the universal rate constants for reaction of the reactive dimers in their ground vibrational state v = 0 and for vibrational quenching of non-reactive dimers with v ≥ 1. Using the known dipole moments and estimated van der Waals coefficients of each species, we calculate electric field dependent loss rate constants for collisions of molecules tightly confined to quasi-two-dimensional geometry by a one-dimensional optical lattice. A simple scaling relation of the quasi-two-dimensional loss rate constants with dipole strength, trap frequency and collision energy is given for like bosons or like fermions. It should be possible to stabilize ultracold dimers of any of these species against destructive collisions by confining them in a lattice and orienting them with an electric field of less than 20 kV cm(-1).
通用碰撞速率常数是为涉及 Li、Na、K、Rb 或 Cs 等物质的两种类似玻色或费米子异核碱金属二聚体的超冷碰撞而计算的。通用碰撞是指短程反应或猝灭碰撞的概率为 1 的碰撞,从而将一对分子从样品中移除。在这种情况下,与化学键长度相比,碰撞速率由非常长程的通用量子动力学决定。我们计算了处于基态振动状态 v = 0 的反应性二聚体的通用反应速率常数和非反应性二聚体的振动猝灭速率常数 v ≥ 1。使用每个物质的已知偶极矩和估计的范德华系数,我们计算了分子在一维光学晶格中紧密限制在准二维几何形状下的电场相关损耗速率常数。对于类似玻色子或类似费米子,给出了准二维损耗速率常数与偶极矩强度、陷阱频率和碰撞能量的简单缩放关系。通过将它们限制在晶格中并使用小于 20 kV cm(-1) 的电场对它们进行定向,可以稳定这些物质的超冷二聚体,防止破坏性碰撞。