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宽带激光器探测和冷却冷分子的振动。

Broadband lasers to detect and cool the vibration of cold molecules.

机构信息

Laboratoire Aimé Cotton, CNRS, Univ Paris-Sud, Bât. 505, 91405 Orsay, France.

出版信息

Faraday Discuss. 2009;142:257-70; discussion 319-34. doi: 10.1039/b819697d.

Abstract

By using broadband lasers, we demonstrate the possibilities for control of cold molecules formed via photoassociation. Firstly, we present a detection REMPI scheme (M. Viteau et al., Phys. Rev. A, 2009, 79, 021402) to systematically investigate the mechanisms of formation of ultracold Cs2 molecules in deeply bound levels of their electronic ground state X1sigma(g)+. This broadband detection scheme could be generalized to other molecular species. Then we report a vibrational cooling technique (M. Viteau et al., Science, 2008, 321, 232) through optical pumping obtained by using a shaped mode locked femtosecond laser. The broadband femtosecond laser excites the molecules electronically, leading to a redistribution of the vibrational population in the ground state via a few absorption-spontaneous emission cycles. By removing the laser frequencies corresponding to the excitation of the v = 0 level, we realize a dark state for the so-shaped femtosecond laser, leading, with the successive laser pulses, to an accumulation of the molecules in the v = 0 level, ie. a laser cooling of the vibration. The simulation of the vibrational laser cooling allows us to characterize the criteria to extend the mechanism to other molecular species (R. V. Krems, Int. Rev. Phys. Chem., 2005, 24, 99). We finally discuss the generalization of the technique to laser cooling of the rotation of the molecule.

摘要

利用宽带激光器,我们展示了通过光缔合控制冷分子的可能性。首先,我们提出了一种检测 REMPI 方案(M. Viteau 等人,Phys. Rev. A,2009,79,021402),以系统地研究在其电子基态 X1sigma(g)+的深束缚能级中形成超冷 Cs2 分子的机制。这种宽带检测方案可以推广到其他分子种类。然后,我们报告了一种通过使用整形锁模飞秒激光获得的光泵浦振动冷却技术(M. Viteau 等人,Science,2008,321,232)。宽带飞秒激光激发分子,通过几个吸收-自发发射循环,导致基态中振动布居的重新分布。通过去除对应于 v = 0 能级激发的激光频率,我们实现了 so 形飞秒激光的暗态,从而导致分子在 v = 0 能级上的积累,即振动的激光冷却。振动激光冷却的模拟允许我们表征将该机制扩展到其他分子种类的条件(R. V. Krems,Int. Rev. Phys. Chem.,2005,24,99)。最后,我们讨论了该技术在分子旋转激光冷却中的推广。

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