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Counting individual atom layers in graphite ― high-resolution RBS experiments on highly oriented pyrolytic graphite

机译:计数石墨中的单个原子层-高取向热解石墨的高分辨率RBS实验

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The contribution reports about recent experiments on highly oriented pyrolytic graphite (HOPG) by high-resolution Rutherford backscattering spectroscopy (RBS). By using an ion beam of 1 MeV N~+ up to seven individual monolayers could be identified in the RBS spectrum from such a sample. This is about twice as much as observed by other groups up to now. Since close to the surface the RBS peaks from the individual carbon layers are well separated, various quantities involved in ion-solid interaction can be determined with high precision, such as the stopping power of 1 MeV N ions in graphite and their energy straggling. Close to the surface the RBS peaks are asymmetric. This asymmetry is well explained in the framework of the Landau theory of energy straggling.
机译:该论文报道了最近通过高分辨率卢瑟福背散射光谱法(RBS)对高取向热解石墨(HOPG)进行的实验。通过使用1 MeV N〜+的离子束,可以从此类样品的RBS光谱中识别出多达七个单独的单层。到目前为止,这大约是其他小组观察到的两倍。由于靠近表面的RBS峰从各个碳层中被很好地分离开,因此可以高精度确定各种离子-固体相互作用所涉及的量,例如1 MeV N离子在石墨中的阻止能力及其能量散失。 RBS峰靠近表面不对称。在Landau能量散布理论的框架中很好地解释了这种不对称性。

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