纳米尺度
绕固定轴旋转
旋转(数学)
不稳定性
材料科学
动力学(音乐)
旋转动力学
纳米技术
光学
转速
显微镜
透射电子显微镜
纳秒
角动量
球拍
物理
电子断层摄影术
角速度
各向异性
旋转扩散
旋转粘度
弹道
比例(比率)
传输(电信)
纳米
可视化
三脚架(摄影)
纳米电子学
碳纳米管
作者
Yu Zhou,Xiaoxiang Wang,Guohu Luo,Minni Qu,B Chen,Dongping Zhong,Yongxiang Hu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-01-06
卷期号:20 (3): 2821-2829
标识
DOI:10.1021/acsnano.5c17620
摘要
Nanoscale rotational dynamics has recently gathered significant interest in many fields, including ultrasensitive sensing and precision manipulation, but presents challenges for observation techniques. Here, we employ movie-mode transmission electron microscopy to investigate the rotational dynamics of laser-excited nanotriangles, achieving multiframe imaging with nanosecond and nanometer resolution. A motion reconstruction methodology was developed to facilitate accurate spatiotemporal trajectory tracking. The observed rotation dynamics of nanotriangles exhibit an obvious axis dependence, characterized by stable rotation around the first principal axis and inherent instability with respect to the second axis. This rotational stability bifurcation resulting from angular momentum redistribution aligns impeccably with the tennis racket effect, marking the first confirmation of classical rigid-body rotational theory at the nanosecond-nanometer scale. Furthermore, through the theoretical analysis of laser-induced rotation, we quantitatively assessed the adhesion state between the nanotriangle and substrate, offering an effective approach for evaluating interfacial properties. This study confirms the tennis racket effect at the nanosecond-nanometer scale and enhances the understanding of nanoscale rotational dynamics.
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