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Ultracold Neutral Plasmas

机译:超冷中性血浆

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By photoionizing a sample of laser-cooled xenon atoms, we create ultracold neutral plasmas with initial temperatures of 1-1000 K and densities as high as 10~(10)cm~(―3). The plasma is formed by the trapping of electrons by the residual positive charge that is left after some electrons initially leave the sample. We excite plasma oscillations with applied radio frequency fields and use this to monitor the expansion of the unconfined plasma. We have observed significant recombination of the plasma into Rydberg atoms (up to 20 %). At these low temperatures, the only traditional form of recombination that could be significant is three-body recombination (TBR), but we see a number of trends in direct contradiction to what one would expect from classical TBR theory.
机译:通过对激光冷却的氙原子样品进行电离,我们创建了初始温度为1-1000 K,密度高达10〜(10)cm〜(-3)的超冷中性等离子体。等离子体是由一些电子最初离开样品后留下的残留正电荷捕获电子而形成的。我们利用施加的射频场激发等离子体振荡,并使用它来监视无约束等离子体的扩展。我们已经观察到等离子体显着重组为Rydberg原子(高达20%)。在如此低的温度下,唯一有意义的传统重组形式是三体重组(TBR),但我们看到许多与经典TBR理论所期望的直接矛盾的趋势。

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