Zugriffsnummer 19655
Dokumenttyp Konferenzartikel in Zeitschrift
Sprache Englisch
Titel A landmark based 3D calibration strategy for SPM
Autor(in); Institution
Ritter, Martin; Bundesanstalt für Materialforschung und -prüfung, Fachgruppe V.1, Berlin, GERMANY
Dziomba, Thorsten; 5.1, Nano- und Mikrometrologie, PTB-Braunschweig
Kranzmann, Axel; Bundesanstalt für Materialforschung und -prüfung, Fachgruppe V.1, Berlin, GERMANY
Koenders, Ludger; 5.1, Nano- und Mikrometrologie, PTB-Braunschweig
Quelle/Jahr Nanoscale metrology. Measurement Science and Technology: 18 (2007), 2, 404 - 414
ISSN 0957-0233
DOI
URL
Verlag Bristol: IOP
Konferenzangaben Nanoscale 2006, Wabern, 24-25, April, 2006, Switzerland
Freie Schlagworte 3D calibration ; SPM ; Scanning probe microscopes ; Nanomakers
Zusammenfassung We present a new method for the complete three-dimensional (3D) calibration of scanning probe microscopes (SPM) and other high-resolution microscopes, e.g., scanning electron microscopes (SEM) and confocal laser scanning microscopes (CLSM), by applying a 3D micrometre-sized reference structure with the shape of a cascade slope-step pyramid. The 3D reference structure was produced by focused ion beam induced metal deposition. In contrast to pitch featured calibration procedures that require separate lateral and vertical reference standards such as gratings and step height structures, the new method includes the use of landmarks, which are well established in calibration and measurement tasks on a larger scale. However, the landmarks applied to the new 3D reference structures are of sub-micrometre size, the so-called 'nanomarkers'. The nanomarker coordinates are used for a geometrical calibration of the scanning process of SPM as well as of other instrument types such as SEM and CLSM. For that purpose, a parameter estimation routine involving three scale factors and three coupling factors has been developed that allows lateral and vertical calibration in only one sampling step. With this new calibration strategy, we are able to detect deviations of SPM lateral scaling errors as well as coupling effects causing, e.g., a lateral coordinate shift depending on the measured height position of the probe.

Zitierung

Ritter, M., Dziomba, T., Kranzmann, A., & Koenders, L. (2007). A landmark based 3D calibration strategy for SPM. Measurement Science and Technology, 18(2), 404–414. https://doi.org/10.1088/0957-0233/18/2/s12

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