相位子
物理
电荷密度波
光激发
凝聚态物理
准粒子
库仑
太赫兹辐射
原子物理学
激发
声子
电子
光学
量子力学
超导电性
作者
Soyeun Kim,Yinchuan Lv,Xiaoqi Sun,Chengxi Zhao,Nina Bielinski,Azel Murzabekova,Kejian Qu,Ryan A. Duncan,Quynh L. Nguyen,Mariano Trigo,Daniel P. Shoemaker,Barry Bradlyn,Fahad Mahmood
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2023-03-09
卷期号:22 (4): 429-433
被引量:19
标识
DOI:10.1038/s41563-023-01504-5
摘要
The lowest-lying fundamental excitation of an incommensurate charge-density-wave material is believed to be a massless phason-a collective modulation of the phase of the charge-density-wave order parameter. However, long-range Coulomb interactions should push the phason energy up to the plasma energy of the charge-density-wave condensate, resulting in a massive phason and fully gapped spectrum1. Using time-domain terahertz emission spectroscopy, we investigate this issue in (TaSe4)2I, a quasi-one-dimensional charge-density-wave insulator. On transient photoexcitation at low temperatures, we find the material strikingly emits coherent, narrowband terahertz radiation. The frequency, polarization and temperature dependences of the emitted radiation imply the existence of a phason that acquires mass by coupling to long-range Coulomb interactions. Our observations underscore the role of long-range interactions in determining the nature of collective excitations in materials with modulated charge or spin order.
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