论文标题
多尺度时间分辨的电子衍射:Moiré材料中的案例研究
Multi-scale time-resolved electron diffraction: A case study in moiré materials
论文作者
论文摘要
超快 - 光泵 - 包括超快电子和X射线散射在内的结构探针测量值可直接实验原子运动的基本时间尺度,因此是研究物质从平衡中研究物质的基础技术。在散射实验中需要高性能检测器,以从每个探针粒子中获得最大的科学价值。我们部署了混合像素阵列直接电子检测器,以在WSE $ _2 $/MOSE $ _2 $ 2D HETEROBILAYER上执行超快电子衍射实验,从而解决了差异散射的弱特征和Moiré超级突出结构的弱特征,而无需使零顺序峰值饱和。通过检测器的高框架速率启用,我们表明,斩波技术在射击噪声限制下提供了通过信噪比进行的衍射差图像。最后,我们证明了快速检测器帧速率,加上高重复率探测器可以提供从飞秒到秒的连续时间分辨率,从而使我们能够执行扫描的超快电子衍射实验,以映射WSE $ _2 $ _2 $/MOSE $ _2 $ _2 $ _2 $ _2 $ and resolves system distion diffusion distion diversif in space ind Time in in space ind Time和时间和时间。
Ultrafast-optical-pump -- structural-probe measurements, including ultrafast electron and x-ray scattering, provide direct experimental access to the fundamental timescales of atomic motion, and are thus foundational techniques for studying matter out of equilibrium. High-performance detectors are needed in scattering experiments to obtain maximum scientific value from every probe particle. We deploy a hybrid pixel array direct electron detector to perform ultrafast electron diffraction experiments on a WSe$_2$/MoSe$_2$ 2D heterobilayer, resolving the weak features of diffuse scattering and moiré superlattice structure without saturating the zero order peak. Enabled by the detector's high frame rate, we show that a chopping technique provides diffraction difference images with signal-to-noise at the shot noise limit. Finally, we demonstrate that a fast detector frame rate coupled with a high repetition rate probe can provide continuous time resolution from femtoseconds to seconds, enabling us to perform a scanning ultrafast electron diffraction experiment that maps thermal transport in WSe$_2$/MoSe$_2$ and resolves distinct diffusion mechanisms in space and time.