Chang Win-Jin, Fang Te-Hua, Lee Haw-Long, Yang Yu-Ching
Department of Mechanical Engineering, Kun Shan University of Technology, Tainan 710, Taiwan.
Ultramicroscopy. 2005 Jan;102(2):85-92. doi: 10.1016/j.ultramic.2004.08.007.
In this paper the Rayleigh-Ritz method was used to study the scanning near-field optical microscope (SNOM) with a tapered optical fiber probe's flexural and axial sensitivity to vibration. Not only the contact stiffness but also the geometric parameters of the probe can influence the flexural and axial sensitivity to vibration. According to the analysis, the lateral and axial contact stiffness had a significant effect on the sensitivity of vibration of the SNOM's probe, each mode had a different level of sensitivity and in the first mode the tapered optical fiber probe was the most acceptive to higher levels of flexural and axial vibration. Generally, when the contact stiffness was lower, the tapered probe was more sensitive to higher levels of both axial and flexural vibration than the uniform probe. However, the situation was reversed when the contact stiffness was larger. Furthermore, the effect that the probe's length and its tapered angle had on the SNOM's probe axial and flexural vibration were significant and these two conditions should be incorporated into the design of new SNOM probes.
在本文中,瑞利 - 里兹法被用于研究具有锥形光纤探针的扫描近场光学显微镜(SNOM)对振动的弯曲和轴向灵敏度。不仅接触刚度,而且探针的几何参数都会影响对振动的弯曲和轴向灵敏度。根据分析,横向和轴向接触刚度对SNOM探针的振动灵敏度有显著影响,每种模式具有不同程度的灵敏度,并且在第一模式下,锥形光纤探针对较高水平的弯曲和轴向振动最为敏感。一般来说,当接触刚度较低时,锥形探针比均匀探针对较高水平的轴向和弯曲振动更敏感。然而,当接触刚度较大时,情况则相反。此外,探针的长度及其锥角对SNOM探针轴向和弯曲振动的影响显著,这两个条件应纳入新型SNOM探针的设计中。