Atomic force microscope probe tips using heavily boron-doped silicon cantilevers realized in a (110) bulk silicon wafer

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초록

A new method of fabricating atomic force microscope (AFM) probe tip is presented. In this process, the probe tips were implemented using self-aligned heavily boron-doped silicon cantilevers in a [110] bulk silicon wafer. In this structure, a stress-fi ee cantilever can be easily defined by selective etch stop by the heavily boron-doped region in an anisotropic silicon etchant. The proposed tips do not require expensive silicon on insulator (SOI) wafers and double-side alignment. The probe tip dimensions can be exactly defined regardless of wafer thickness by the self-aligned etch from the front side. In addition: the cantilever thickness can be easily controlled by adjusting the diffusion time, and fabricated at low cost by using bulk silicon wafers. The fabricated probe tips showed resonant frequencies of 71.420 kHz with a 1.8-mum-thick probe tip and 122.660 kHz with a 3.0-mum-thick probe tip. Using the two fabricated probe tips, we successfully demonstrate image scanning of a 1 mum grating reference sample in contact and noncontact modes, respectively.

키워드

AFM; SPM heavily boron-doped; cantilever; fabrication of AFM; tip; probe tip; EDP; (110) wafer
제목
Atomic force microscope probe tips using heavily boron-doped silicon cantilevers realized in a (110) bulk silicon wafer
저자
Cho, Il-Joo; Park, Eun-Chul; Hong, Songcheol; Yoon, Euisik
DOI
10.1143/JJAP.39.7103
발행일
2000-12
유형
Article; Proceedings Paper
저널명
Japanese Journal of Applied Physics
권
39
호
12B
페이지
7103 ~ 7107