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首页> 外文期刊>Physical Review, B. Condensed Matter >Photoemission studies of chiral metal surfaces using circularly polarized synchrotron radiation - art. no. 115408
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Photoemission studies of chiral metal surfaces using circularly polarized synchrotron radiation - art. no. 115408

机译:使用圆偏振同步加速器辐射进行手性金属表面的光发射研究-艺术没有。 115408

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摘要

In an attempt to measure classical circular dichroism (CD) in the photoemission of electrons from a solid surface, valence-band photoemission from clean and adsorbate-covered chiral metal surfaces has been investigated using circularly polarized synchrotron radiation. An experimental geometry was used whereby (q) over right arrow, the polarization of the radiation, (k) over right arrow, the wave vector of the photoemitted electrons, and (n) over right arrow, the surface normal, were coplanar. It was anticipated that by doing this, so-called CDAD (circular dichroism in the angular distribution) effects associated with chiral photoemission geometries would be decoupled from classical CD arising from the difference in absorption cross-section for left and right circularly polarized light of electrons in energy states associated with R and S kinks. However, from the magnitude of the effects observed, it is evident that any classical CD features in the photoelectron spectrum arising from kinks, including photoemission from surface states or resonances, are swamped by other dichroic effects. We conclude that final-state effects in the diffraction of photoelectrons dominate the intensity of all peaks observed in angle-resolved photoemission from chiral, single crystal, metal surfaces using circularly polarized photons. [References: 21]
机译:为了测量来自固体表面的电子的光发射中的经典圆二向色性(CD),已经使用圆偏振同步加速器辐射研究了清洁的和被吸附物覆盖的手性金属表面的价带光发射。使用实验几何形状,其中(q)在右箭头上,辐射的极化,(k)在右箭头上,光发射电子的波矢量,以及(n)在右箭头上,表面法线,是共面的。可以预期,通过这样做,与手性光发射几何形状相关的所谓CDAD(角分布中的圆形二向色性)效应将与经典CD脱钩,这是由电子的左右圆偏振光的吸收截面的差异引起的处于与R和S扭结相关的能态然而,从观察到的效应的大小来看,很明显,由扭结产生的光电子谱中的任何经典CD特征,包括表面状态或共振的光发射,都被其他二向色性效应所淹没。我们得出的结论是,在光电子衍射中的最终状态效应主导了使用圆偏振光子从手性,单晶,金属表面的角度分辨光发射中观察到的所有峰的强度。 [参考:21]

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