Susceptibility of atomic force microscope cantilevers to lateral forces: Experimental verification
John Elie Sader, Raymond C. Sader
Abstract
John Elie Sader, Raymond C. Sader
Abstract
The performance of the atomic force microscope (AFM) is underpinned by the properties of its force-sensing microcantilever. Due to the universal belief that V-shaped cantilevers are more resistant to lateral forces than rectangular cantilevers, V-shaped cantilevers are used widely in the AFM. A recent theoretical study [J. E. Sader, Rev. Sci. Instrum. 74, 2438 (2003)], however, discounts this entrenched operating principle by theoretically establishing that V-shaped AFM cantilevers offer less resistance to lateral forces than rectangular cantilevers. Since this finding is difficult to test on (microscopic) AFM cantilevers, we conduct detailed measurements on model macroscopic cantilevers, and thus verify this theoretical prediction.
OpenAlex reports 35 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The performance of the atomic force microscope (AFM) is underpinned by the properties of its force-sensing microcantilever. Due to the universal belief that V-shaped cantilevers are more resistant to lateral forces than rectangular cantilevers, V-shaped cantilevers are used widely in the AFM. A recent theoretical study [J. E. Sader, Rev. Sci. Instrum. 74, 2438 (2003)], however, discounts this entrenched operating principle by theoretically establishing that V-shaped AFM cantilevers offer less resistance to lateral forces than rectangular cantilevers. Since this finding is difficult to test on (microscopic) AFM cantilevers, we conduct detailed measurements on model macroscopic cantilevers, and thus verify this theoretical prediction.
Key concepts: Cantilever, Atomic force microscopy, Materials science, Magnetic force microscope, Nanotechnology, Microscope, Non-contact atomic force microscopy, Conductive atomic force microscopy