Karcı Özgür, Dede Münir, Oral Ahmet
NanoMagnetics Instruments Ltd., Hacettepe - İvedik OSB Teknokent, 1368. Cad., No: 61/33, 06370, Yenimahalle, Ankara, Turkey.
Department of Physics, Middle East Technical University, 06800 Ankara, Turkey.
Rev Sci Instrum. 2014 Oct;85(10):103705. doi: 10.1063/1.4897147.
We describe the design of a wide temperature range (300 mK-300 K) atomic force microscope/magnetic force microscope with a self-aligned fibre-cantilever mechanism. An alignment chip with alignment groves and a special mechanical design are used to eliminate tedious and time consuming fibre-cantilever alignment procedure for the entire temperature range. A low noise, Michelson fibre interferometer was integrated into the system for measuring deflection of the cantilever. The spectral noise density of the system was measured to be ∼12 fm/√Hz at 4.2 K at 3 mW incident optical power. Abrikosov vortices in BSCCO(2212) single crystal sample and a high density hard disk sample were imaged at 10 nm resolution to demonstrate the performance of the system.
我们描述了一种具有自对准光纤悬臂机构的宽温度范围(300 mK - 300 K)原子力显微镜/磁力显微镜的设计。采用带有对准凹槽的对准芯片和特殊的机械设计,以消除在整个温度范围内繁琐且耗时的光纤悬臂对准过程。系统集成了低噪声迈克尔逊光纤干涉仪来测量悬臂的偏转。在4.2 K、3 mW入射光功率下,测得系统的光谱噪声密度约为12 fm/√Hz。对BSCCO(2212)单晶样品中的阿布里科索夫涡旋和高密度硬盘样品进行了10 nm分辨率成像,以展示该系统的性能。