Simultaneous current, force and dissipation measurements on the Si(111) 7×7 surface with an optimized qplus AFM/STM technique

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Abstract

We present the results of simultaneous scanning-tunneling and frequency-modulated dynamic atomic force microscopy measurements with a qPlus setup. The qPlus sensor is a purely electrical sensor based on a quartz tuning fork. If both the tunneling current and the force signal are to be measured at the tip, a cross-talk of the tunneling current with the force signal can easily occur. The origin and general features of the capacitive cross-talk will be discussed in detail in this contribution. Furthermore, we describe an experimental setup that improves the level of decoupling between the tunneling-current and the deflection signal. The efficiency of this experimental setup is demonstrated through topography and site-specific force/tunneling-spectroscopy measurements on the Si(111) 7×7 surface. The results show an excellent agreement with previously reported data measured by optical interferometric deflection. © 2012 Majzik et al.

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Majzik, Z., Setvín, M., Bettac, A., Feltz, A., Cháb, V., & Jelínek, P. (2012). Simultaneous current, force and dissipation measurements on the Si(111) 7×7 surface with an optimized qplus AFM/STM technique. Beilstein Journal of Nanotechnology, 3(1), 249–259. https://doi.org/10.3762/bjnano.3.28

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