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Positron annihilation induced Auger electron spectroscopy

机译:正电子an没诱导俄歇电子能谱

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摘要

Recently, Weiss et al. have demonstrated that it is possible to excite Auger transitions by annihilating core electrons using a low energy (less than 30eV) beam of positrons. This mechanism makes possible a new electron spectroscopy, Positron annihilation induced Auger Electron Spectroscopy (PAES). The probability of exciting an Auger transition is proportional to the overlap of the positron wavefunction with atomic core levels. Since the Auger electron energy provides a signature of the atomic species making the transition, PAES makes it possible to determine the overlap of the positron wavefunction with a particular element. PAES may therefore provide a means of detecting positron-atom complexes. Measurements of PAES intensities from clean and adsorbate covered Cu surfaces are presented which indicate that approx. 5 percent of positrons injected into CU at 25eV produce core annihilations that result in Auger transitions.
机译:最近,Weiss等人。已经证明有可能通过使用低能量(小于30eV)的正电子束an灭核心电子来激发俄歇跃迁。这种机制使一种新的电子光谱学成为可能,正电子an没感应俄歇电子能谱(PAES)。激发俄歇跃迁的可能性与正电子波函数与原子核能级的重叠成正比。由于俄歇电子能提供发生跃迁的原子种类的特征,因此PAES可以确定正电子波函数与特定元素的重叠。因此,PAES可以提供​​检测正电子-原子配合物的方法。提出了从干净的和被吸附物覆盖的铜表面进行的PAES强度测量,表明大约为。 5%的25eV注入CU的正电子产生核心core灭,导致俄歇跃迁。

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