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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Study of excitation transfer Li(3D → 3P) occurring in optical collisions with rare gas atoms experimentally
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Study of excitation transfer Li(3D → 3P) occurring in optical collisions with rare gas atoms experimentally

机译:实验研究与稀有气体原子发生光学碰撞中的激发转移Li(3D→3P)

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摘要

By selective optical excitation of collision pairs and observation of the reemitted fluorescence information is obtained on the role of the molecular channels involved in inelelastic collisions. As an example case we have studied experimentally the Li(3D → 3P) excitation transfer in Li(3D)X systems with X = Ne, Ar by means of the optical collision process Li(2P) + X + hv → LiX(3DΛ) → Li(3P,3D) + X where LiX(3DΛ) collision molecules dissociate into Li(3P,3D) atoms following laser excitation hv of Li(2P) + X pairs. For this purpose we measured the Li 3P/3D population ratio by the fluorescence from these levels as function of the laser detuning Δv from the Li(2P-3D) transition and the rare gas pressure, and determined from this the 3P/3D excitation ratio B(Δv) for single collision conditions. The experiments were performed using two step cw laser excitation of gaseous mixtures Li + X at temperatures around 600 K in the detuning range |Δv| ≤ 100 cm~(-1). The B(Δv) profiles obtained display strong blue-red wing asymmetries both for Li~*Ne and Li~*Ar. This reflects different dissociation probabilities from the 3D∑ or 3D(∏,Δ) states that are initially prepared by blue wing or red wing excitation, respectively. The results are qualitatively discussed in terms of new ab initio potentials for the two systems.
机译:通过碰撞对的选择性光激发和观察到的重新发射的荧光信息,可以了解分子通道在非弹性碰撞中的作用。作为示例,我们通过光学碰撞过程Li(2P)+ X + hv→LiX(3DΛ)对X = Ne,Ar的Li(3D)X系统中的Li(3D→3P)激发转移进行了实验研究。 →Li(3P,3D)+ X,其中LiX(3D,)碰撞分子在Li(2P)+ X对激光激发hv后解离为Li(3P,3D)原子。为此,我们根据这些水平的荧光测量了Li 3P / 3D的人口比率,该比率是激光从Li(2P-3D)跃迁和稀有气体压力失谐Δv的函数,并由此确定了3P / 3D激发比率对于单个碰撞条件,B(Δv)。使用两步连续激光对气态混合物Li + X在失谐范围|Δv|内约600 K的温度下进行激发。 ≤100 cm〜(-1)。所获得的B(Δv)轮廓对于Li〜Ne和Li〜Ar均显示出强烈的蓝红色机翼不对称性。这反映了分别由蓝翼或红翼激发分别准备的3D∑或3D(∏,Δ)状态的不同解离概率。就两个系统的新的从头算潜力对结果进行了定性讨论。

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