标题: | 以石英音叉为感测核心之原子力显微镜之设计 Design of an atomic force microscope utilizing quartz tuning fork as the sensing kernel |
作者: | 李美娇 Li, Mei-Jiao 洪绍刚 Hung, Shao-Kang 机械工程系所 |
关键字: | 原子力显微镜;石英音叉;微组装;atomic force microscope;quartz tuning fork;micro-assembly |
公开日期: | 2012 |
摘要: | 本论文提出一种以石英音叉 (Quartz tuning fork, QTF) 为感测核心设计之原子力显微镜 (Atomic force microscope, AFM) ,利用石英音叉的压电特性,其自身能感测到受力之后产生振幅变化,用以取代传统原子力显微镜的光学感测方法。 传统原子力显微镜以雷射光杠杆原理来探测样品与针尖表面作用之后的微悬臂挠曲现象,扫描样品前的光路对准过程相当繁复,且其雷射光学机构复杂使得整个原子力显微镜系统无法更加轻量化。本研究中将以石英音叉的振荡特性用于原子力显微镜的轻敲式扫描模式 (Tapping mode) ,并成功的扫描标准样品。 This thesis presents a design of an atomic force microscope(AFM)utilizing quartz tuning fork(QTF)as the sensing kernel. QTF can be a force sensor replacing conventional AFM optical detecting system. Conventional atomic force microscopes using optical system detect microcantilever deflection. The mechanism of the optical system and the alignment of the laser spot are too complex to scan large sample by AFM systems. The presented QTF based probe can be used as a sensor in tapping-mode AFM systems. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070051007 http://hdl.handle.net/11536/72714 |
显示于类别: | Thesis |