论文标题
纳米空培揭示的极性超导体Lafeaso的电子结构的强表面终止依赖性
Strong surface termination dependence of the electronic structure of polar superconductor LaFeAsO revealed by nano-ARPES
论文作者
论文摘要
通过使用垂钓光发射光谱(ARPES),已经对铁基超导体的电子结构进行了深入研究。大量的研究集中在Lafeaso家族上,显示出最高的过渡温度,在此之前,先前的ARPES研究发现费米表面要比大量理论计算所预测的要大得多。差异归因于终止依赖性表面状态的存在。在这里,使用光发射光谱与亚微米聚焦梁斑(纳米 - 弧),我们成功地测量了Lafeaso中老挝和候选终止的电子结构。我们的数据揭示了不同表面终止的非常不同的带分散和核心水平光谱,这表明先前的宏观对焦ARPES测量不完整。我们的结果为Lafeaso中表面驱动的电子结构重建提供了直接证据,包括在费米水平上形成终止依赖性的表面状态。现在,将这种新的实验技术应用于该原型化合物时非常强大,现在可以用于研究具有不同表面终止的各种材料。
The electronic structures of the iron-based superconductors have been intensively studied by using angleresolved photoemission spectroscopy (ARPES). A considerable amount of research has been focused on the LaFeAsO family, showing the highest transition temperatures, where previous ARPES studies have found much larger Fermi surfaces than bulk theoretical calculations would predict. The discrepancy has been attributed to the presence of termination-dependent surface states. Here, using photoemission spectroscopy with a sub-micron focused beam spot (nano-ARPES) we have successfully measured the electronic structures of both the LaO and FeAs terminations in LaFeAsO. Our data reveal very different band dispersions and core-level spectra for different surface terminations, showing that previous macro-focus ARPES measurements were incomplete. Our results give direct evidence for the surface-driven electronic structure reconstruction in LaFeAsO, including formation of the termination-dependent surface states at the Fermi level. This new experimental technique, which we have shown to be very powerful when applied to this prototypical compound, can now be used to study various materials with different surface terminations.