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Thermal behavior of the roughened Cu(110) surface

机译:粗糙的Cu(110)表面的热行为

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The roughened Cu(110) surface was prepared by annealing the clean surface at various temperatures ranging from 700 to similar to 1000 K. A significant drop in intensity of reflection anisotropy spectroscopy (RAS) peak at 2.1 eV photon energy as a function of increasing sample temperature was found for annealing above the roughening transition at 900 K. The observed change of 2.1 eV peak in RAS spectra is because of the surface state Fermi level shift due to temperature change. The RAS result is in good agreement with an unoccupied surface state energy using inverse photoemission spectroscopy (IPES). New IPES results indicate that the unoccupied surface state intensity decreases with increasing annealing temperature. It was also found that the unoccupied surface state was shifted. IPES results provide that the contributions of the (Y) over bar surface state to surface optical properties at 2.1 eV are relevant for the RAS technique. (c) 2006 Elsevier Ltd. All rights reserved.
机译:粗糙的Cu(110)表面是通过在700至1000 K的不同温度下对清洁的表面进行退火而制备的。在2.1 eV光子能量下,反射各向异性光谱(RAS)峰的强度显着下降,这是样品数量增加的函数发现在900 K处在高于粗糙化转变温度的温度下进行退火。在RAS光谱中观察到的2.1 eV峰的变化是由于温度变化导致的表面状态费米能级移动。使用反光发射光谱法(IPES),RAS结果与未占据的表面态能量高度吻合。新的IPES结果表明,未占用的表面态强度随退火温度的升高而降低。还发现未占用的表面状态发生了变化。 IPES结果提供了在2.1 eV时棒表面状态上的(Y)对表面光学特性的贡献与RAS技术有关。 (c)2006 Elsevier Ltd.保留所有权利。

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