Zugriffsnummer 27194
Dokumenttyp Zeitschriftenartikel
Peer Review unbekannt
Sprache Englisch
Titel Precise determination of force microscopy cantilever stiffness from dimensions and eigenfrequencies
Autor(in); Institution
Lübbe, Jannis; Universität Osnabrück, Fachbereich Physik, Osnabrück, Germany, GERMANY
Doering, Lutz; 5.1, Oberflächenmesstechnik, PTB-Braunschweig
Reichling, Michael; Universität Osnabrück, Fachbereich Physik, Osnabrück, Germany, GERMANY
Quelle/Jahr Measurement Science and Technology: 23 (2012), 4, 045401-1 - 045401-9
ISSN 0957-0233
DOI
URL
Verlag Bristol: IOP
Klassifikationscode PACS: 06.20.fa ; PACS: 81.70.Fy ; PACS: 06.30.Ft ; PACS: 06.20.DK
Zusammenfassung We demonstrate the non-destructive measurement of the stiffness of single-beam, monocrystalline silicon cantilevers with a trapezoidal cross-section and tips as used for atomic force microscopy from the knowledge of cantilever dimensions, eigenfrequencies and material parameters. This yields stiffness values with an uncertainty of ± 25% as the result critically depends on the thickness of the cantilever that is experimentally difficult to determine. The uncertainty is reduced to ± 7% when the measured fundamental eigenfrequency is included in the calculation and a tip mass correction is applied. The tip mass correction can be determined from the eigenfrequencies of the fundamental and first harmonic modes. Results are verified by tip destructive measurements of the stiffness with a precision instrument recording a force-bending curve yielding an uncertainty better than ± 5%.

Zitierung

Lübbe, J., Doering, L., & Reichling, M. (2012). Precise determination of force microscopy cantilever stiffness from dimensions and eigenfrequencies. Measurement Science and Technology, 23(4), 045401-1–045401-9. https://doi.org/10.1088/0957-0233/23/4/045401

Exportieren

PTB-Publica Menü

Sprache wechseln: uk flag