Watkins Neil J, Long James P, Kafafi Zakya H, Mäkinen Antti J
Naval Research Laboratory, Washington, DC 20375, USA.
Rev Sci Instrum. 2007 May;78(5):053707. doi: 10.1063/1.2740479.
We report a compact light collection scheme suitable for retrofitting a scanning tunneling microscope (STM) for STM-induced light emission experiments. The approach uses a pair of optical fibers with large core diameters and high numerical apertures to maximize light collection efficiency and to moderate the mechanical precision required for alignment. Bench tests indicate that efficiency reduction is almost entirely due to reflective losses at the fiber ends, while losses due to fiber misalignment have virtually been eliminated. Photon-map imaging with nanometer features is demonstrated on a stepped Au(111) surface with signal rates exceeding 10(4) counts/s.
我们报告了一种紧凑的光收集方案,适用于对扫描隧道显微镜(STM)进行改造,以用于STM诱导发光实验。该方法使用一对具有大芯径和高数值孔径的光纤,以最大化光收集效率并降低对准所需的机械精度。台架测试表明,效率降低几乎完全是由于光纤端部的反射损耗,而由于光纤未对准造成的损耗实际上已被消除。在具有超过10(4)计数/秒信号速率的阶梯状Au(111)表面上展示了具有纳米特征的光子映射成像。