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Modulated hydrogen beam study of adsorption-induced desorption of deuterium from Si(100)-3×1:D surfaces

机译:氢束从Si(100)-3×1:D表面吸附脱附的调制氢束研究

摘要

We have studied the kinetic mechanism of the adsorption-induced-desorption (AID) reaction, H + D/Si(100)D2. Using a modulated atomic hydrogen beam, two different types of AID reaction are revealed: one is the fast AID reaction occurring only at the beam on-cycles and the other the slow AID reaction occurring even at the beam off-cycles. Both the fast and slow AID reactions show the different dependence on surface temperature Ts, suggesting that their kinetic mechanisms are different. The fast AID reaction overwhelms the slow one in the desorption yield for 300 KTs650 K. It proceeds along a first-order kinetics with respect to the incident H flux. Based on the experimental results, both two AID reactions are suggested to occur only on the 3×1 dihydride phase accumulated during surface exposure to H atoms. Possible mechanisms for the AID reactions are discussed.
机译:我们研究了吸附诱导解吸(AID)反应H + D / Si(100)D2的动力学机理。使用调制的原子氢束,揭示了两种不同类型的AID反应:一种是仅在束打开周期发生快速AID反应,另一种是甚至在束关闭周期发生缓慢AID反应。快速和慢速AID反应都显示出对表面温度Ts的不同依赖性,表明它们的动力学机理是不同的。快速的AID反应使300 KTs650 K的解吸产率慢下来。它相对于入射H通量沿一阶动力学进行。根据实验结果,两个AID反应都建议仅在表面暴露于H原子期间累积的3×1二氢化物相上发生。讨论了AID反应的可能机制。

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