论文标题
Terahertz发射揭示的狄拉克半金属CD3AS2中的超快光热效应
Ultrafast photothermoelectric effect in Dirac semimetallic Cd3As2 revealed by terahertz emission
论文作者
论文摘要
拓扑半学的热电效应引起了极大的研究兴趣,因为许多拓扑半学是出色的热电材料,而热电学则是其最重要的潜在应用之一。在这项工作中,我们通过研究通过这些效应诱导的短暂性光电流的Terahertz(THZ)发射来揭示Dirac半金属CD3AS2的瞬时光热反应。我们的激发极化和功率依赖性证实,观察到的THz发射是由于光热效应而不是其他非线性光学效应引起的。此外,当应用弱磁场(〜0.4 t)时,响应清楚地表明,与光观察效应相比,瞬态光热电流发电的数量级增强。这样的增强支持CD3AS2中光静脉当前一代的双极传输性质。这些结果突出了基于NernST效应的拓扑狄拉克半学可以实现热电性能的增强,而我们的瞬态研究为适用于非平衡状态的热电设备的热电设备铺平了道路。高效光热转化引起的大型THZ发射可通过光学整流和照片末期效应与常规半导体相媲美。
The thermoelectric effects of topological semimetals have attracted tremendous research interest because many topological semimetals are excellent thermoelectric materials and thermoelectricity serves as one of their most important potential applications. In this work, we reveal the transient photothermoelectric response of Dirac semimetallic Cd3As2, namely the photo-Seebeck effect and photo-Nernst effect, by studying the terahertz (THz) emission from the transient photocurrent induced by these effects. Our excitation polarization and power dependence confirm that the observed THz emission is due to photothermoelectric effect instead of other nonlinear optical effect. Furthermore, when a weak magnetic field (~0.4 T) is applied, the response clearly indicates an order of magnitude enhancement on transient photothermoelectric current generation compared to the photo-Seebeck effect. Such enhancement supports an ambipolar transport nature of the photo-Nernst current generation in Cd3As2. These results highlight the enhancement of thermoelectric performance can be achieved in topological Dirac semimetals based on the Nernst effect, and our transient studies pave the way for thermoelectric devices applicable for high field circumstance when nonequilibrium state matters. The large THz emission due to highly efficient photothermoelectric conversion is comparable to conventional semiconductors through optical rectification and photo-Dember effect.