Peng Zhaoliang, Ding Jiaqi, Wu Jiahao, Cheng Jingjie, Liu Yan, Sun Chengliang, Zhang Wenming, Shao Lei
Opt Express. 2024 May 20;32(11):18441-18452. doi: 10.1364/OE.511631.
Imaging the complex dynamics of micro-vibrations plays a fundamental role in the investigation of microelectromechanical systems (MEMS). However, it remains a challenge for achieving both a wide bandwidth and a low noise due to the high photodetector noise and electromagnetic interference at GHz frequencies. Here, we propose a pulsed laser interferometry system with an adaptable switch to image GHz vibrations based on stroboscopic mixing, while measuring lower-frequency vibrations based on the homodyne scheme. The noise power spectral density is shown in both regions from DC to 10 GHz with an average noise down to 30.8 fm/√Hz at GHz frequencies, which holds the highest resolution to the best of our knowledge. Vibrational amplitude and phase mappings of a kHz comb-drive resonator, a GHz piezoelectric transducer, and a GHz film bulk acoustic resonator are presented with animated visualizations and k-space analysis, paving a new paradigm for the first time to image and analyze various MEMS devices of a bandwidth spanning 10 orders of magnitude.
对微振动的复杂动力学进行成像在微机电系统(MEMS)研究中起着基础性作用。然而,由于GHz频率下光电探测器噪声高和电磁干扰大,要实现宽带宽和低噪声仍然是一项挑战。在此,我们提出一种带有自适应开关的脉冲激光干涉测量系统,基于频闪混频对GHz振动进行成像,同时基于零差方案测量低频振动。从直流到10 GHz的两个区域均展示了噪声功率谱密度,在GHz频率下平均噪声低至30.8 fm/√Hz,据我们所知这是最高分辨率。通过动画可视化和k空间分析展示了kHz梳齿驱动谐振器、GHz压电换能器和GHz薄膜体声波谐振器的振动幅度和相位映射,首次为成像和分析带宽跨越10个数量级的各种MEMS器件开辟了新范式。