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- W2106302020 endingPage "395701" @default.
- W2106302020 startingPage "395701" @default.
- W2106302020 abstract "Measurements of the gauge factor of suspended, top-down silicon nanowires are presented. The nanowires are fabricated with a CMOS compatible process and with doping concentrations ranging from 2 × 1020 down to 5 × 1017 cm − 3. The extracted gauge factors are compared with results on identical non-suspended nanowires and with state-of-the-art results. An increase of the gauge factor after suspension is demonstrated. For the low doped nanowires a value of 235 is measured. Particular attention was paid throughout the experiments to distinguishing real resistance change due to strain modulation from resistance fluctuations due to charge trapping. Furthermore, a numerical model correlating surface charge density with the gauge factor is presented. Comparison of the simulations with experimental measurements shows the validity of this approach. These results contribute to a deeper understanding of the piezoresistive effect in Si nanowires." @default.
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- W2106302020 date "2011-09-02" @default.
- W2106302020 modified "2023-10-18" @default.
- W2106302020 title "Piezoresistance of top-down suspended Si nanowires" @default.
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- W2106302020 doi "https://doi.org/10.1088/0957-4484/22/39/395701" @default.
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