RIKEN Center for Emergent Matter Science, Wako, Saitama 351-0198, Japan.
Quantum-Phase Electronics Center and Department of Applied Physics, The University of Tokyo, Hongo, Tokyo 113-8656, Japan.
Nano Lett. 2020 Jul 8;20(7):4932-4938. doi: 10.1021/acs.nanolett.0c01006. Epub 2020 Jun 9.
The control of acoustic phonons, which are the carriers of sound and heat, has become the focus of increasing attention because of a demand for manipulating the sonic and thermal properties of nanometric devices. In particular, the photoacoustic effect using ultrafast optical pulses has a promising potential for the optical manipulation of phonons in the picosecond time regime. So far, its mechanism has been mostly based on the commonplace thermoelastic expansion in isotropic media, which has limited applicability. In this study, we investigate a conceptually new mechanism of the photoacoustic effect involving a structural instability that utilizes a transition-metal dichalcogenide VTe with a ribbon-type charge-density-wave (CDW). Ultrafast electron microscope imaging and diffraction measurements reveal the generation and propagation of unusual acoustic waves in a nanometric thin plate associated with optically induced instantaneous CDW dissolution. Our results highlight the capability of photoinduced structural instabilities as a source of coherent acoustic waves.
声子是声音和热的载体,对其进行有效控制受到了越来越多的关注,因为这可以实现对纳米器件声子和热学性能的调控。特别是,利用超快光脉冲的光声效应有望在皮秒时间尺度上对声子进行光学操控。到目前为止,其机制主要基于各向同性介质中常见的热弹性膨胀,这限制了其适用性。在本研究中,我们研究了涉及结构不稳定性的光声效应的新概念性机制,该机制利用了具有带状电荷密度波(CDW)的过渡金属二卤化物 VTe。超快电子显微镜成像和衍射测量揭示了与光诱导的瞬时 CDW 溶解相关的纳米薄片状板中异常声波的产生和传播。我们的研究结果突出了光诱导结构不稳定性作为相干声波源的能力。