Klokov Andrey Yu, Frolov Nikolay Yu, Sharkov Andrey I, Nikolaev Sergey N, Chernopitssky Maxim A, Chentsov Semen I, Pugachev Mikhail V, Duleba Aliaksandr I, Shupletsov Alexey V, Krivobok Vladimir S, Kuntsevich Aleksandr Yu
P.N. Lebedev Physical Institute of the RAS, Leninsky Prospekt 53, Moscow 119991, Russia.
Moscow Institute of Physics and Technology, Institutskiy per. 9, Dolgoprudny, Moscow Region 141701, Russia.
Nano Lett. 2022 Mar 9;22(5):2070-2076. doi: 10.1021/acs.nanolett.2c00003. Epub 2022 Feb 28.
The mechanical properties of the layered crystals in the few layer limit are largely unexplored. We employ a picosecond ultrasonic technique to access the corresponding mechanical parameters. Temporal variation of the reflection coefficient of the Al film that covers hBN/WSe/hBN (where hBN is hexagonal boron nitride) heterostructures on a sapphire substrate after the femtosecond laser pulse excitation is carefully measured using an interferometric technique with spatial resolution. The laser pulse generates a broadband sound wave packet propagating perpendicularly to the Al plane and partially reflecting from the heterostructural interfaces. The demonstrated technique allows one to resolve a WSe monolayer embedded in hBN. We apply a multilayered model of the optoacoustical response to evaluate the mechanical parameters, in particular, the rigidity of the interfaces. Mapping of the Fourier spectra of the response visualizes different composition regions and may serve as an acoustic tomography tool. Almost zero phonon dissipation below 150 GHz demonstrates the van der Waals heterostructures' potential for nanoacoustical applications.
在少层极限情况下,层状晶体的力学性能在很大程度上尚未得到探索。我们采用皮秒超声技术来获取相应的力学参数。使用具有空间分辨率的干涉测量技术,仔细测量了在飞秒激光脉冲激发后,覆盖在蓝宝石衬底上的hBN/WSe/hBN(其中hBN是六方氮化硼)异质结构上的Al膜反射系数的时间变化。激光脉冲产生一个垂直于Al平面传播并从异质结构界面部分反射的宽带声波包。所展示的技术能够分辨嵌入在hBN中的WSe单层。我们应用光声响应的多层模型来评估力学参数,特别是界面的刚度。响应的傅里叶光谱映射可视化了不同的组成区域,并且可以作为一种声学层析成像工具。低于150 GHz时几乎为零的声子耗散证明了范德华异质结构在纳米声学应用方面的潜力。