异质结
半导体
振荡(细胞信号)
电介质
声子
材料科学
凝聚态物理
光电子学
声学
物理
化学
生物化学
作者
Wenxiong Xu,Feiyang Hou,He Zhang,Chuansheng Xia,Z Li,Yuanyuan Li,Chunxiang Xu,Qiannan Cui
标识
DOI:10.1088/1361-6463/ad70c4
摘要
Abstract Coherent acoustic phonon (CAP) oscillation of a 2D layered semiconductor/3D dielectric heterostructure generated by femtosecond laser pulse excitation can realize ultrafast photoacoustic conversion by emitting picosecond acoustic (PA) pulse; however, the photoacoustic conversion efficiency suffers from interfacial phonon scattering of simultaneously laser-induced lattice heat. Here, taking advantage of graphene’s high thermal conductivity and large acoustic impedance, we demonstrate that phonon scattering can be markedly mediated in a MoS 2 /graphene/glass heterostructure via femtosecond laser pump–probe measurements. The equilibrium temperatures of the MoS 2 lattice have been cooled down by about 45%. As a benefit, both the lifetime of CAP oscillations and the pump pulse-picosecond acoustic pulse energy conversion efficiency have been enhanced by a factor of about 2. Our results offer insights into CAP and PA pulse manipulations via interfacial engineering that are fundamentally important for ultrafast photoacoustics based on 2D layered semiconductors.
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