Distinct Optical Excitation Mechanisms of a Coherent Magnon in a van der
Waals Antiferromagnet
马格农
反铁磁性
激发
范德瓦尔斯力
物理
凝聚态物理
量子力学
原子物理学
铁磁性
分子
作者
Clifford J. Allington,Carina A. Belvin,Urban F. P. Seifert,Mengxing Ye,Tommy Tai,Edoardo Baldini,Suhan Son,Jung Hyun Kim,Jaena Park,Je‐Geun Park,Leon Balents,Nuh Gedik
The control of antiferromagnets with ultrashort optical pulses has emerged as a prominent field of research. Tailored laser excitation can launch coherent spin waves at terahertz frequencies, yet a comprehensive description of their generation mechanisms is still lacking despite extensive efforts. Using terahertz emission spectroscopy, we investigate the generation of a coherent magnon mode in the van der Waals antiferromagnet NiPS$_3$ under a range of photoexcitation conditions. By tuning the pump photon energy from transparency to resonant with a $d$-$d$ transition, we reveal a striking change in the coherent magnon's dependence on the pump polarization, indicating two distinct excitation mechanisms. Our findings provide a strategy for the manipulation of magnetic modes via photoexcitation around sub-gap electronic states.