论文标题
魔鬼在CESB中电子结构的楼梯过渡
Devil's staircase transition of the electronic structures in CeSb
论文作者
论文摘要
具有竞争相互作用的固体通常会通过多种长周期调制进行复杂的相变。在这种过渡中,魔鬼的楼梯是最复杂的现象,因此,CESB是最著名的材料,其中许多具有长周期性磁结构的不同相位顺序出现在Neel温度以下。通过魔鬼楼梯的低能电子结构的演变是特别感兴趣的,然而,尽管进行了40年的深入研究,但到目前为止,这仍然难以捉摸。在这里,我们使用散装敏感的角度分辨光发射光谱法,并揭示魔鬼的楼梯对电子结构的过渡。磁重建大大改变了每次过渡时带分散的频带分散。此外,我们发现,定义明确的频带图像在过渡阶段的长周期调制下在费米能量周围大大崩溃,而在过渡到最低温度的基态状态下,它恢复了。我们的数据提供了第一个直接证据,证明了在魔鬼楼梯期间发生的电子结构和光谱功能的重新重组。
Solids with competing interactions often undergo complex phase transitions with a variety of long-periodic modulations. Among such transition, devil's staircase is the most complex phenomenon, and for it, CeSb is the most famous material, where a number of the distinct phases with long-periodic magnetostructures sequentially appear below the Neel temperature. An evolution of the low-energy electronic structure going through the devil's staircase is of special interest, which has, however, been elusive so far despite the 40-years of intense researches. Here we use bulk-sensitive angle-resolved photoemission spectroscopy and reveal the devil's staircase transition of the electronic structures. The magnetic reconstruction dramatically alters the band dispersions at each transition. We moreover find that the well-defined band picture largely collapses around the Fermi energy under the long-periodic modulation of the transitional phase, while it recovers at the transition into the lowest-temperature ground state. Our data provide the first direct evidence for a significant reorganization of the electronic structures and spectral functions occurring during the devil's staircase.