论文标题
1T-tise2中激素相关性的结构辅助融化2
Structurally assisted melting of excitonic correlations in 1T-TiSe2
论文作者
论文摘要
电子和结构自由度的同时凝结产生了物质的新状态,包括超导性和电荷密度波的形成。当令人兴奋的凝结系统激发时,通常假定超快激光脉冲会干扰电子秩序,这反过来又破坏了原子结构的稳定。与这个概念相反,我们在这里表明,很少的原子的结构不稳定会导致1T-Tise2中宏观有序的电荷密度波的融化。使用Ultrafast Pump-probe非谐振和谐振X射线衍射,我们观察到9月4P轨道顺序和激发能的原子结构完全抑制了低于建议的激子结合能的一个数量级。电荷密度波的完全熔化发生的速度比纯电子电荷筛查过程的预期快4-5倍,这强烈表明了兴奋子相关性的结构辅助分解。我们的实验数据阐明了关于稳定1T-Tise2中电荷密度波的结构和电子秩序之间复杂耦合的几个问题。结果进一步表明,电子偶联可以导致凝结物质系统中不同的,依赖能量的相位转换途径,从而在超快量表上为非平衡现象的概念开辟了新的可能性。
The simultaneous condensation of electronic and structural degrees of freedom gives rise to new states of matter, including superconductivity and charge-density-wave formation. When exciting such a condensed system, it is commonly assumed that the ultrafast laser pulse disturbs primarily the electronic order, which in turn destabilizes the atomic structure. Contrary to this conception, we show here that structural destabilization of few atoms causes melting of the macroscopic ordered charge-density wave in 1T-TiSe2. Using ultrafast pump-probe non-resonant and resonant X-ray diffraction, we observe full suppression of the Se 4p orbital order and the atomic structure at excitation energies more than one order of magnitude below the suggested excitonic binding energy. Complete melting of the charge-density wave occurs 4-5 times faster than expected from a purely electronic charge-screening process, strongly suggesting a structurally assisted breakup of excitonic correlations. Our experimental data clarifies several questions on the intricate coupling between structural and electronic order in stabilizing the charge-density-wave in 1T-TiSe2. The results further show that electron-phonon-coupling can lead to different, energy dependent phase-transition pathways in condensed matter systems, opening new possibilities in the conception of non-equilibrium phenomena at the ultrafast scale.