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Evolution of a symmetry gap and synergetic quantum well states in ultrathin Ag films on Au(111) substrates

机译:Au(111)衬底上超薄银膜中对称间隙和协同量子阱态的演化

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Using first-principles calculations within density functional theory (DFT) and high-resolution angle-resolved photoemission spectroscopy (ARPES), we carry out a comprehensive study of how a symmetry gap around the Fermi level develops towards its bulk value as the thickness of Ag films grown on an Au(111) substrate increases. We show that, contrary to prevailing assumptions, the symmetry gap in ultrathin Ag films can be substantially wider than the gap of the Au substrate along the [111] direction. As a result, the first and second quantum well states (QWS) are confined within the Ag films only when the film reaches a certain thickness. We further show that, when ultrathin Au films are grown on Ag(111) slabs of comparable thicknesses, synergetic QWS spanning across the whole (Au+Ag) systems are established.
机译:使用密度泛函理论(DFT)和高分辨率角度分辨光发射光谱(ARPES)中的第一性原理计算,我们对费米能级附近的对称间隙如何随着Ag的厚度向其堆积值发展而进行了全面研究在Au(111)衬底上生长的薄膜增加。我们表明,与普遍的假设相反,超薄银膜中的对称间隙可以比沿[111]方向的金基板的间隙大得多。结果,仅当膜达到一定厚度时,第一和第二量子阱状态(QWS)才被限制在Ag膜内。我们进一步表明,当超薄金膜在相当厚度的Ag(111)平板上生长时,跨整个(Au + Ag)系统的协同QWS就建立了。

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