Hoogenboom B W, Frederix P L T M, Fotiadis D, Hug H J, Engel A
London Centre for Nanotechnology and Department of Physics and Astronomy, University College London, 17-19 Gordon Street, London WC1H 0AH, UK.
Nanotechnology. 2008 Sep 24;19(38):384019. doi: 10.1088/0957-4484/19/38/384019. Epub 2008 Aug 12.
We have developed an optical cantilever deflection detector with a spot size <3 µm and fm Hz(-1/2) sensitivity over a>10 MHz bandwidth. In this work, we demonstrate its potential for detecting small-amplitude oscillations of various flexural and torsional oscillation modes of cantilevers. The high deflection sensitivity of the interferometer is particularly useful for detecting cantilever oscillations in aqueous solutions, enabling us to reach the thermal noise limit in scanning or atomic force microscopy experiments with stiff cantilevers. This has resulted in atomic-resolution images of solid-liquid interfaces and submolecular-resolution images of native membranes.
我们已经开发出一种光斑尺寸小于3微米且在大于10兆赫兹带宽上具有飞米赫兹(-1/2)灵敏度的光学悬臂梁偏转探测器。在这项工作中,我们展示了其检测悬臂梁各种弯曲和扭转振荡模式的小振幅振荡的潜力。干涉仪的高偏转灵敏度对于检测水溶液中的悬臂梁振荡特别有用,使我们能够在使用刚性悬臂梁的扫描或原子力显微镜实验中达到热噪声极限。这已产生了固液界面的原子分辨率图像和天然膜的亚分子分辨率图像。