Sohrt C, Stange A, Bauer M, Rossnagel K
Institut für Experimentelle und Angewandte Physik, Christian-Albrechts-Universität zu Kiel, D-24098 Kiel, Germany.
Faraday Discuss. 2014;171:243-57. doi: 10.1039/c4fd00042k. Epub 2014 Aug 7.
Time- and angle-resolved extreme ultraviolet photoemission spectroscopy is used to directly determine the momentum-dependent electronic structure dynamics in the layered Peierls-Mott insulators 1T-TaS(2) and 1T-TaSe(2) on the sub-300 fs time scale. Extracted spectroscopic order parameters display a global two-time-scale dynamics indicating a quasi-instantaneous loss of the electronic orders and a subsequent coherent suppression of the lattice distortion on a time scale related to the frequency of the charge-density-wave amplitude mode. After one half-cycle of coherent amplitude-mode vibration, a crossover state between insulator and metal with partially filled-in and partially closed Mott and Peierls gaps is reached. The results are discussed within the wider context of electronic order quenching in complex materials.
时间分辨和角度分辨极紫外光发射光谱用于在亚300飞秒时间尺度上直接测定层状佩尔斯 - 莫特绝缘体1T-TaS₂和1T-TaSe₂中与动量相关的电子结构动力学。提取的光谱序参量显示出全局双时间尺度动力学,表明电子序参量的准瞬时损失以及随后在与电荷密度波振幅模式频率相关的时间尺度上对晶格畸变的相干抑制。在相干振幅模式振动的半个周期后,达到了绝缘体和金属之间的交叉态,其具有部分填充和部分闭合的莫特和佩尔斯能隙。在复杂材料中电子序猝灭的更广泛背景下讨论了这些结果。