Mante Pierre-Adrien, Huang Yu-Ru, Yang Szu-Chi, Liu Tzu-Ming, Maznev Alexei A, Sheu Jinn-Kong, Sun Chi-Kuang
Department of Electrical Engineering and Graduate Institute of Photonics and Optoelectronics, National Taiwan University, Taipei 10617, Taiwan.
Institute of Biomedical Engineering, National Taiwan University, Taipei 10617, Taiwan.
Ultrasonics. 2015 Feb;56:52-65. doi: 10.1016/j.ultras.2014.09.020. Epub 2014 Oct 16.
Thanks to ultrafast acoustics, a better understanding of acoustic dynamics on a short time scale has been obtained and new characterization methods at the nanoscale have been developed. Among the materials that were studied during the development of ultrafast acoustics, nitride based heterostructures play a particular role due to their piezoelectric properties and the possibility to generate phonons with over-THz frequency and bandwidth. Here, we review some of the work performed using this type of structure, with a focus on THz phonon spectroscopy and nanoscopy. First, we present a brief description of the theory of coherent acoustic phonon generation by piezoelectric heterostructure. Then the first experimental observation of coherent acoustic phonon generated by the absorption of ultrashort light pulses in piezoelectric heterostructures is presented. From this starting point, we then present some methods developed to realize customizable phonon generation. Finally we review some more recent applications of these structures, including imaging with a nanometer resolution, broadband attenuation measurements with a frequency up to 1THz and phononic bandgap characterization.
得益于超快声学技术,人们对短时间尺度下的声学动力学有了更深入的理解,并开发出了纳米尺度的新表征方法。在超快声学技术发展过程中所研究的材料中,基于氮化物的异质结构因其压电特性以及产生太赫兹以上频率和带宽声子的可能性而发挥着特殊作用。在此,我们回顾一些使用此类结构开展的工作,重点关注太赫兹声子光谱学和纳米显微镜技术。首先,我们简要描述压电异质结构产生相干声子的理论。接着介绍在压电异质结构中通过吸收超短光脉冲产生相干声子的首次实验观测。从这一出发点出发,我们随后介绍一些为实现可定制声子产生而开发的方法。最后,我们回顾这些结构的一些最新应用,包括纳米分辨率成像、高达1太赫兹频率的宽带衰减测量以及声子带隙表征。