Institute of Complex Systems, National Research Council, Sesto Fiorentino, Italy.
J Microsc. 2011 Apr;242(1):10-4. doi: 10.1111/j.1365-2818.2010.03476.x. Epub 2010 Dec 13.
We present a fibre-top probe fabricated by carving a tipped cantilever on an optical fibre, with the tip machined in correspondence of the fibre core. When approached to an optical prism illuminated under total internal reflection conditions, the tip of the cantilever detects the optical tunnelling signal, while the light coupled from the opposite end of the fibre measures the deflection of the cantilever. Our results suggest that fibre-top technology can be used for the development of a new generation of hybrid probes that can combine atomic force microscopy with scanning near field optical microscopy.
我们展示了一种通过在光纤上雕刻尖端悬臂制作而成的光纤顶尖探头,尖端的加工位置与光纤芯相对应。当光纤顶尖探头接近在全内反射条件下照明的光学棱镜时,悬臂的尖端会检测到光学隧道信号,而从光纤另一端耦合的光则会测量悬臂的挠度。我们的结果表明,光纤顶尖技术可用于开发新一代混合探头,从而将原子力显微镜与扫描近场光学显微镜结合起来。