Wakim A, Zabawa P, Haruza M, Bigelow N P
Department of Physics and Astronomy, University of Rochester, Rochester, NY 14627, USA.
Opt Express. 2012 Jul 2;20(14):16083-91. doi: 10.1364/OE.20.016083.
We demonstrate the use of optical pumping of kinetically ultracold NaCs to cool an initial vibrational distribution of electronic ground state molecules X(1)Σ(+)(v ≥ 4) into the vibrational ground state X(1)Σ(+)(v=0). Our approach is based on the use of simple, commercially available multimode diode lasers selected to optically pump population into X(1)Σ(+)(v=0). We investigate the impact of the cooling process on the rotational state distribution of the vibrational ground state, and observe that an initial distribution, J(initial)=0-2 is only moderately affected resulting in J(final)=0-4. This method provides an inexpensive approach to creation of vibrational ground state ultracold polar molecules.
我们展示了利用动力学超冷NaCs的光泵浦,将电子基态分子X(1)Σ(+)(v≥4)的初始振动分布冷却到振动基态X(1)Σ(+)(v = 0)。我们的方法基于使用简单的、市售的多模二极管激光器,选择这些激光器将粒子数光泵浦到X(1)Σ(+)(v = 0)。我们研究了冷却过程对振动基态转动状态分布的影响,并观察到初始分布J(初始)=0 - 2仅受到适度影响,结果为J(最终)=0 - 4。该方法为制备振动基态超冷极性分子提供了一种经济的途径。