亚稳态
光激发
准粒子
超短脉冲
电荷密度波
皮秒
材料科学
原子物理学
光谱学
凝聚态物理
物理
激发态
光学
量子力学
激光器
超导电性
作者
Shaofeng Duan,Wei Xia,Chaozhi Huang,Shichong Wang,Lingxiao Gu,Haoran Liu,Dao Xiang,Dong Qian,Yanfeng Guo,Wentao Zhang
标识
DOI:10.1103/physrevlett.130.226501
摘要
The ultrafast electronic structures of the charge density wave material 1T-TiSe_{2} were investigated by high-resolution time- and angle-resolved photoemission spectroscopy. We found that the quasiparticle populations drove ultrafast electronic phase transitions in 1T-TiSe_{2} within 100 fs after photoexcitation, and a metastable metallic state, which was significantly different from the equilibrium normal phase, was evidenced far below the charge density wave transition temperature. Detailed time- and pump-fluence-dependent experiments revealed that the photoinduced metastable metallic state was a result of the halted motion of the atoms through the coherent electron-phonon coupling process, and the lifetime of this state was prolonged to picoseconds with the highest pump fluence used in this study. Ultrafast electronic dynamics were well captured by the time-dependent Ginzburg-Landau model. Our work demonstrates a mechanism for realizing novel electronic states by photoinducing coherent motion of atoms in the lattice.
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