摘要:
低維量子材料具有豐富的光——物質相互作用和新奇的物理效應。基于超快激光的光——物質相互作用不僅是探索低維量子材料微觀物理機制的重要探測手段,而且強場脈沖激光還有望作為一種新型的瞬時物态調控手段,通過周期性光場對電子态的調制(弗洛凱調控)實現平衡态所不具有的新物理、新物态[1]。本報告中,我将介紹我們在低維量子材料瞬時能帶調控方面的研究進展。以半導體材料黑磷為例,我将介紹如何通過中紅外激光共振激發[2]和低能非共振激發[3],實現半導體能帶的瞬時調控。
[1] Changhua Bao et al., “Light-induced emergent phenomena in two-dimensional materials and topological materials”, Nat. Rev. Phys. 4, 33 (2022)
[2] Shaohua Zhou+, Changhua Bao+ et al., “Pseudospin-selective Floquet band engineering in black phosphorus”, Nature 614, 75 (2023)
[3] Shaohua Zhou+, Changhua Bao+, et al., “Floquet engineering of black phosphorus by below-gap pumping”, Phys. Rev. Lett. 131, 116401 (2023)