DocumentCode :
82420
Title :
Subnanomachining by Ultrasonic-Vibration-Assisted Atomic Force Microscopy
Author :
Jialin Shi ; Lianqing Liu ; Peilin Zhou ; Feifei Wang ; Yuechao Wang
Author_Institution :
State Key Lab. of Robot., Shenyang Inst. of Autom., Shenyang, China
Volume :
14
Issue :
4
fYear :
2015
fDate :
Jul-15
Firstpage :
735
Lastpage :
741
Abstract :
The ultrasonic vibration (UV)-assisted method, as an innovative nanomachining process, has competitive advantages compared to traditional atomic force microscopy (AFM) nanomachining methods. However, the mechanism of nanomachining by ultrasonic-assisted AFM is still unclear. Furthermore, the mathematical control model for the nanomachining process is still lacking. Therefore, the UV-assisted nanomachining process is difficult to control on the nanometer-thick film, and no additional work has been reported at this time. In this paper, the mechanisms of ultrasonic-assisted AFM subnanomachining have been analyzed by using a point-mass model for the dynamic AFM cantilever, and a mathematical model of ultrasonic subnanomachining has been established on the basis of these mechanisms. The subnanomachining experiments were carried out on a 5-nm-thick polystyrene thin film using AFM under sample UV conditions. The experimental results have shown that the amplitude of sample UV can regulate the subnanomachining depth. Finally, the simulation results from the mathematical model and the experimental results have been compared in this study.
Keywords :
atomic force microscopy; machining; nanofabrication; nanostructured materials; polymer films; thin films; ultrasonic applications; vibrations; dynamic AFM cantilever; nanometer-thick film; point-mass model; polystyrene thin film; subnanomachining depth; ultrasonic-vibration-assisted atomic force microscopy; Acoustics; Force; Gold; Machining; Mathematical model; Nanofabrication; Vibrations; Atomic force microscopy (AFM); dynamic cantilever model; sub-nanomachining; subnanomachining; ultrasonic-assisted machining;
fLanguage :
English
Journal_Title :
Nanotechnology, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2015.2439311
Filename :
7115126
Link To Document :
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