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Slow ground state molecules from matrix isolation sublimation

机译:基质隔离升华产生的慢基态分子

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摘要

We describe the generation and properties of a cryogenic beam of Li-7(2) dimers from sublimation of a neon matrix where lithium atoms have been implanted via laser ablation of solid precursors of metallic lithium or lithium hydride (LiH). Different sublimation regimes lead to pulsed molecular beams with different temperatures, densities and forward velocities. With laser absorption spectroscopy these parameters were measured using the molecular Li-7(2) (R) transitions A(1)Sigma(+)(u)(v' = 4, J' = J" + 1) <- X-1 Sigma(+)(g)(v" = 0, J" = 0, 1, 3). In a typical regime, sublimating a matrix at 16 K, translational temperatures of 6-8 K with a drift velocity of 130 m s(-1) in a free expanding pulsed beam with molecular density of 10(9) cm(-3), averaged along the laser axis, were observed. Rotational temperatures around 5-7 K were obtained. In recent experiments we were able to monitor the atomic Li signal-in the D2 line-concomitantly with the molecular signal in order to compare them as a function of the number of ablation pulses. Based on the data and a simple model, we discuss the possibility that a fraction of these molecules are being formed in the matrix, by mating atoms from different ablation pulses, which would open up the way to formation of other more interesting and difficult molecules to be studied at low temperatures. Such a source of cryogenic molecules have possible applications encompassing fundamental physics tests, quantum information studies, cold collisions, chemistry, and trapping.
机译:我们描述了从氖基体升华到Li-7(2)二聚体低温束的产生和特性,其中通过金属金属锂或氢化锂(LiH)的固体前体的激光烧蚀注入了锂原子。不同的升华方式导致脉冲分子束具有不同的温度,密度和正向速度。使用激光吸收光谱法,这些分子参数使用分子Li-7(2)(R)跃迁A(1)Sigma(+)(u)(v'= 4,J'= J“ + 1)<-X- 1 Sigma(+)(g)(v“ = 0,J” = 0,1,3)。在典型情况下,以16 K升华矩阵,平移温度为6-8 K,漂移速度为130 ms (-1)在一个沿激光轴平均的分子密度为10(9)cm(-3)的自由扩展脉冲束中,观察到旋转温度为5-7 K,在最近的实验中我们能够监测D2线中的原子Li信号与分子信号,以便将其作为消融脉冲数量的函数进行比较,基于数据和简单模型,我们讨论了这些分子中一部分分子的可能性通过匹配来自不同消融脉冲的原子在基体中形成分子,这将为形成其他更有趣且更难在低温下研究的分子开辟道路。低温分子具有可能的应用,包括基础物理测试,量子信息研究,冷碰撞,化学和捕获。

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