论文标题
拉曼边带冷却的运动选择性相干人口捕获沿两条路径的$λ$配置
Motion-selective coherent population trapping by Raman sideband cooling along two paths in a $Λ$ configuration
论文作者
论文摘要
我们以$λ$配置的两个拉曼过渡在边带冷却上报告了我们的实验,该型号允许运动基态的选择性相干捕获(CPT)。冷却方法应用于圆形偏振的一维光学晶格中的$^{87} $ rb原子。由于矢量极化性,被困原子的振动频率取决于其Zeeman量子数,并且在$λ$配置中的一对绑定状态的CPT共振取决于其振动量子数。我们称这种方案运动选择性相干种群捕获(MSCPT),它是与速度 - 选择性CPT自由开发的原子原子的捕获 - 原子类似物。我们观察到对拉曼梁的失沟附近的温度有明显的倾角,以满足运动基态的CPT共振条件。尽管我们获得的最低温度是我们设备中2.3的较大羔羊 - dicke参数,这是后坐力极限的十倍,但该实验表明MSCPT提高了拉曼边带冷却的有效性,并扩大了其应用范围。关于$^{87} $ rb原子在$^{87} $ rb原子上优化的设计参数的讨论以及diotomic极性分子提供的机会,其鲜明的偏移表现出对旋转量子数的强烈依赖。
We report our experiment on sideband cooling with two Raman transitions in a $Λ$ configuration that allows selective coherent population trapping (CPT) of the motional ground state. The cooling method is applied to $^{87}$Rb atoms in a circularly-polarized one-dimensional optical lattice. Owing to the vector polarizability, the vibration frequency of a trapped atom depends on its Zeeman quantum number, and CPT resonance for a pair of bound states in the $Λ$ configuration depends on their vibrational quantum numbers. We call this scheme motion-selective coherent population trapping (MSCPT) and it is a trapped-atom analogue to the velocity-selective CPT developed for free He atoms. We observe a pronounced dip in temperature near a detuning for the Raman beams to satisfy the CPT resonance condition for the motional ground state. Although the lowest temperature we obtain is ten times the recoil limit owing to the large Lamb-Dicke parameter of 2.3 in our apparatus, the experiment demonstrates that MSCPT enhances the effectiveness of Raman sideband cooling and enlarges the range of its application. Discussions on design parameters optimized for MSCPT on $^{87}$Rb atoms and opportunities provided by diatomic polar molecules, whose Stark shift shows strong dependence on the rotational quantum number, are included.