Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5454247 | Journal of Nuclear Materials | 2017 | 6 Pages |
Abstract
Both conductive atomic force microscopy (CAFM) and transmission electron microscopy have been used to characterize the defects or He bubbles in low-energy (120Â eV)Â H and He irradiated tungsten (W). By a comparative study, we find that the current mapping from CAFM is very sensitive in the detection of nanometer-sized defects in low-energy H and He irradiated W. Our calculation confirms that the resistance change in H and He irradiated W is strongly affected by the distance between atomic force microscopy tip and defects/He bubbles. CAFM can accurately detect defects/He bubbles in the W surface layer, however, it is infeasible to measure them in the deep layer (>20Â nm), especially due to the existence of defects in the surface layer.
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Authors
Hongyu Fan, Takashi Endo, Zhenghua Bi, Weibin Yan, Somei Ohnuki, Qi Yang, Weiyuan Ni, Dongping Liu,