DocumentCode :
2419669
Title :
3-D Simulation of Bosch Process with Voxel-Based Method
Author :
Guangyi Sun ; Xin Zhao ; Haixia Zhang ; Lei Wang ; Guizhang Lu
Author_Institution :
Inst. of Robotics & Autom. Inf. Syst., Nankai Univ., Tianjin
fYear :
2007
fDate :
16-19 Jan. 2007
Firstpage :
45
Lastpage :
49
Abstract :
A new approach for three-dimensional simulation of Bosch process with arbitrary 2D mask shape with voxel-based method is presented. Its surface evolution is based on 3D mathematical morphology derived from image processing and the visualization is based on volume rendering. The rate distribution of etching and deposition is obtained from macroscopic point advancement models which consider flux distributions and surface reactions. Based on this method, a 3D simulator has been developed, which can be applied in the development of Bosch process. It is possible to simulate the etching of different types of material and alternation of etching and polymerization. By simulating aspect ratio-dependent etching (ARDE), lag and pattern transfer effects can be found clearly in the 3D topography. A simulated 3D profile of 2 mum times 2 mum cross trench shows a good agreement with the experimental data.
Keywords :
image processing; polymerisation; rendering (computer graphics); sputter etching; 2 micron; 2D mask shape; 3D mathematical morphology; 3D topography; Bosch process; aspect ratio-dependent etching; flux distributions; image processing; pattern transfer effects; surface evolution; volume rendering; voxel method; Etching; Image processing; Information systems; Polymers; Rendering (computer graphics); Shape; Solid modeling; Surface morphology; Surface topography; Visualization; 3D Mathematical Morphology; Bosch process; Volume Rendering; Voxel method;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nano/Micro Engineered and Molecular Systems, 2007. NEMS '07. 2nd IEEE International Conference on
Conference_Location :
Bangkok
Print_ISBN :
1-4244-0610-2
Type :
conf
DOI :
10.1109/NEMS.2007.352084
Filename :
4160387
Link To Document :
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