光激发
自旋电子学
太赫兹辐射
材料科学
飞秒
超短脉冲
异质结
光电子学
自旋(空气动力学)
旋转泵
旋转
激发
自旋霍尔效应
电子
自旋等离子体光子学
凝聚态物理
激光器
铁磁性
自旋极化
物理
光学
热力学
量子力学
作者
P. C. Agarwal,Yingshu Yang,Rohit Medwal,Hironori Asada,Yasuhiro Fukuma,Marco Battiato,Ranjan Singh
标识
DOI:10.1002/adom.202301027
摘要
Abstract Femtosecond laser‐induced photoexcitation of ferromagnet (FM)/heavy metal (HM) heterostructures has attracted attention by emitting broadband terahertz frequencies. The phenomenon relies on the formation of an ultrafast spin current, which is primarily attributed to the direct photoexcitation of the FM layer. However, during the process, the FM layer also experiences a secondary excitation led by the hot electrons from the HM layer that travel across the FM/HM interface and transfer additional energy in the FM. Thus, the generated secondary spins enhance the total spin current formation and lead to amplified spintronic terahertz emission. These results emphasize the significance of the secondary spin current, which even exceeds the primary spin currents when FM/HM heterostructures with thicker HM are used. An analytical model is developed to provide deeper insights into the microscopic processes within the individual layers, underlining the generalized ultrafast superdiffusive spin‐transport mechanism.
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