Sammanfattning
Electrical characterization of nanowires is a time-consuming and challenging task due to the complexity of single nanowire device fabrication and the difficulty in interpreting the measurements. We present a method to measure Hall effect in nanowires using a three-probe device that is simpler to fabricate than previous four-probe nanowire Hall devices and allows characterization of nanowires with smaller diameter. Extraction of charge carrier concentration from the three-probe measurements using an analytical model is discussed and compared to simulations. The validity of the method is experimentally verified by a comparison between results obtained with the three-probe method and results obtained using four-probe nanowire Hall measurements. In addition, a nanowire with a diameter of only 65 nm is characterized to demonstrate the capabilities of the method. The three-probe Hall effect method offers a relatively fast and simple, yet accurate way to quantify the charge carrier concentration in nanowires and has the potential to become a standard characterization technique for nanowires.
| Originalspråk | engelska |
|---|---|
| Sidor (från-till) | 1121-1126 |
| Antal sidor | 6 |
| Tidskrift | Nano Letters |
| Volym | 17 |
| Nummer | 2 |
| DOI | |
| Status | Published - 2017 feb. 8 |
Ämnesklassifikation (UKÄ)
- Den kondenserade materiens fysik (Här ingår: Materialfysik, nanofysik)
Fingeravtryck
Utforska forskningsämnen för ”Simplifying Nanowire Hall Effect Characterization by Using a Three-Probe Device Design”. Tillsammans bildar de ett unikt fingeravtryck.Forskningsoutput
- 2 Doktorsavhandling (sammanläggning)
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Hultin, O., 2018 apr. 18, Division of Solid State Physics, Department of Physics, Lund University, Box 118, SE-221 00 Lund, Sweden,.Forskningsoutput: Avhandling › Doktorsavhandling (sammanläggning)
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III-V Nanowire Solar Cells: Growth and Characterization
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