Occupied And Unoccupied Band Structure Of Ag(100) Determined By Photoemission From Ag Quantum Wells And Bulk Samples

J. Paggel,T. Miller, T.-C. Chiang

PHYSICAL REVIEW B(2000)

引用 40|浏览1
暂无评分
摘要
Angle-resolved photoemission spectra taken from atomically uniform films of Ag on Fe(100) show layer-resolved quantum-well peaks. The measured peak positions as a function of film thickness permit a unique determination of the initial band dispersion via the Bohr-Sommerfeld quantization rule. This information, combined with normal-emission data taken from a single crystal Ag(100), leads to a unique determination of the final band dispersion. In this study, we employ a two-band model with four adjustable parameters for a simultaneous fit to these experimental results. The initial and final band dispersions deduced from the fit are accurate to better than 0.03 eV at any wave vector k within the range of measurement. The analytic formula for the band dispersions and the parameters for the best fit are given for future reference. The Fermi wave vector along [100], normalized to the Brillouin-zone size, is determined to be k(F) /k(Gamma X) = 0.828+/-0.001, which is more accurate than the de Haas-van Alphen result. The corresponding Fermi velocity is v(F)=1.06 in units of the free-electron value. The combined reflection phase for the electron wave at the two boundaries is also deduced and compared with a semiempirical formula. This comparison allows us to deduce the edges of the hybridization gap in the Fe substrate.
更多
查看译文
关键词
brillouin zone,single crystal,band structure,quantum well,effective mass,fermi surface,thin film
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要