论文标题

光引起的尺寸交叉在1T-tise $ _2 $中由激子相关性决定

Light-induced dimension crossover in 1T-TiSe$_2$ dictated by excitonic correlations

论文作者

Cheng, Yun, Zong, Alfred, Li, Jun, Xia, Wei, Duan, Shaofeng, Zhao, Wenxuan, Li, Yidian, Qi, Fengfeng, Wu, Jun, Zhao, Lingrong, Zhu, Pengfei, Zou, Xiao, Jiang, Tao, Guo, Yanfeng, Yang, Lexian, Qian, Dong, Zhang, Wentao, Kogar, Anshul, Zuerch, Michael W., Xiang, Dao, Zhang, Jie

论文摘要

在具有较强电子相关性的低维系统中,超短激光脉冲的应用通常会产生新的相位,而这些阶段原本无法访问。理解这种现象的核心挑战是确定维度和多体相关性如何共同控制非绝热过渡的途径。为此,我们检查了一个分层化合物1T键$ _2 $,其三维电荷密度波(3D CDW)状态还具有由于强电子孔相互作用而引起的激子凝结。我们发现PhoteDcitation在创建非平衡2D CDW时抑制了平衡3D CDW。值得注意的是,除非损坏了绑定的电子孔对,否则不会降低尺寸。这种关系表明,激子的相关性保持了平面外CDW连贯性,并就其在CDW过渡中的作用进行了长期的争论。我们的发现表明了电子相互作用的光学操纵如何使人们能够控制破碎的对称顺序的维度,从而为实现强相关系统中其他新兴状态铺平了道路。

In low-dimensional systems with strong electronic correlations, the application of an ultrashort laser pulse often yields novel phases that are otherwise inaccessible. The central challenge in understanding such phenomena is to determine how dimensionality and many-body correlations together govern the pathway of a non-adiabatic transition. To this end, we examine a layered compound, 1T-TiSe$_2$, whose three-dimensional charge-density-wave (3D CDW) state also features exciton condensation due to strong electron-hole interactions. We find that photoexcitation suppresses the equilibrium 3D CDW while creating a nonequilibrium 2D CDW. Remarkably, the dimension reduction does not occur unless bound electron-hole pairs are broken. This relation suggests that excitonic correlations maintain the out-of-plane CDW coherence, settling a long-standing debate over their role in the CDW transition. Our findings demonstrate how optical manipulation of electronic interaction enables one to control the dimensionality of a broken-symmetry order, paving the way for realizing other emergent states in strongly correlated systems.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源