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The electronic structure and the formation of polarons in Mo-doped BiVO4 measured by angle-resolved photoemission spectroscopy

机译:通过角度分辨的光曝光光谱测量的Mo掺杂的BIVO4中的电子结构和在Mo掺杂的BIVO4中形成

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We experimentally investigated the electronic structure of Mo-doped BiVO4 high-quality single-crystals with synchrotron radiation-excited angle-resolved photoelectron spectroscopy (ARPES). By photon-energy dependent ARPES, we measured the bulk-derived valence band dispersion along the direction normal to the (010) cleavage plane, while the dispersion along the in-plane directions is obtained by angle-dependent measurements at fixed photon energy. Our data show that the valence band has a width of about 4.75 eV and is composed of many peaks, the two most intense have energies in good agreement with the theoretically calculated ones. A non-dispersive feature is observed in the fundamental gap, which we attribute to quasiparticle excitations coupling electrons and phonons, i.e. polarons. The determination of the polaron peak binding energy and bulk band gap allows to fix the value of the theoretical mixing parameter necessary in hybrid Hartree-Fock calculations to reproduce the experimental data. The attribution of the in-gap peak to polarons is strengthened by our discussion in the context of experimental transport data and ab initio theory.
机译:我们通过同步辐射激发的角度分辨光电子谱(ARPES)通过实验研究了Mo-掺杂的BIVO4高质量单晶的电子结构。通过光子 - 能量依赖性ARPE,我们测量沿正常的方向的体衍生的价带分散,而通过固定光子能量处的角度依赖性测量来获得沿着平面方向的分散来测量沿着(010)的切割平面的方向。我们的数据显示,价频段的宽度约为4.75eV,并且由许多峰组成,两种最强烈的能量与理论上计算的符合良好的协议。在基本差距中观察到非分散特征,我们将Quasiparticle激励耦合电子和声子,即极化子。偏振子峰粘合能量和散装带隙的测定允许固定混合Hartree-Fock计算中所需的理论混合参数的值以再现实验数据。我们在实验运输数据和AB Initio理论的背景下的讨论得到了差距峰的归因。

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