Fabrication and characterization of germanium-on-insulator through epitaxy, bonding, and layer transfer

A scalable method to fabricate germanium on insulator (GOI) substrate through epitaxy, bonding, and layer transfer is reported. The germanium (Ge) epitaxial film is grown directly on a silicon (Si) (001) donor wafer using a “three-step growth” approach in a reduced pressure chemical vapour depositio...

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Main Authors: Lee, Kwang Hong, Bao, Shuyu, Chong, Gang Yih, Tan, Yew Heng, Fitzgerald, Eugene A., Tan, Chuan Seng
其他作者: School of Electrical and Electronic Engineering
格式: Article
語言:English
出版: 2015
主題:
在線閱讀:https://hdl.handle.net/10356/107093
http://hdl.handle.net/10220/25327
http://dx.doi.org/10.1063/1.4895487
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機構: Nanyang Technological University
語言: English
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總結:A scalable method to fabricate germanium on insulator (GOI) substrate through epitaxy, bonding, and layer transfer is reported. The germanium (Ge) epitaxial film is grown directly on a silicon (Si) (001) donor wafer using a “three-step growth” approach in a reduced pressure chemical vapour deposition. The Ge epilayer is then bonded and transferred to another Si (001) wafer to form the GOI substrate. The Ge epilayer on GOI substrate has higher tensile strain (from 0.20% to 0.35%) and rougher surface (2.28 times rougher) compared to the Ge epilayer before transferring (i.e., Ge on Si wafer). This is because the misfit dislocations which are initially hidden along the Ge/Si interface are now flipped over and exposed on the top surface. These misfit dislocations can be removed by either chemical mechanical polishing or annealing. As a result, the Ge epilayer with low threading dislocations density level and surface roughness could be realized.