DocumentCode
425057
Title
Thermal noise response based control of tip-sample separation in AFM
Author
Gannepalli, Anil ; Sebastian, Abu ; Cleveland, Jason P. ; Salapaka, Murti V.
Author_Institution
Dept. of Electr. & Comput. Eng., Iowa State Univ., Ames, IA, USA
Volume
4
fYear
2004
fDate
June 30 2004-July 2 2004
Firstpage
3122
Abstract
Micro-cantilever based devices have revolutionized imaging and they are the primary tools for investigation and control of matter at the nanoscale. In certain applications like single electron spin detection, it is essential to maintain a sub-nanometer tip-sample separation for extended periods of time. The existing techniques of atomic force microscope (AFM) operation are not suited for such applications. In this paper a novel approach based on the thermal noise response of the cantilever is developed that promises to meet the aforementioned challenges. The presented technique exploits the dependence of the tip-sample separation and cantilever´s resonant frequency to maintain a small tip-sample separation by regulating the effective resonant frequency. The resonant frequency is estimated from cantilever´s response to the thermal noise forcing. The experiments performed in ambient room conditions have achieved tip-sample separations as small as 1.5 nm for time periods in excess of 30 min.
Keywords
atomic force microscopy; frequency control; frequency response; physical instrumentation control; thermal noise; AFM; cantilever resonant frequency estimation; frequency response; microcantilever based atomic force microscopy; resonant frequency regulation; subnanometer tip sample separation; thermal noise response; tip sample separation control;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference, 2004. Proceedings of the 2004
Conference_Location
Boston, MA, USA
ISSN
0743-1619
Print_ISBN
0-7803-8335-4
Type
conf
Filename
1384389
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