Polynomial-interpolation algorithm for van der Pauw Hall measurement in a metal hydride film

We apply a four-term polynomial-interpolation extension of the van der Pauw Hall measurement technique to a 330 nm Mg-Pd bilayer during both absorption and desorption of hydrogen at room temperature. We show that standard versions of the van der Pauw DC Hall measurement technique produce an error of...

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Veröffentlicht in:Measurement science & technology 2008-10, Vol.19 (10), p.105106-105106 (5)
Hauptverfasser: Koon, D W, Ares, J R, Leardini, F, Fernández, J F, Ferrer, I J
Format: Artikel
Sprache:eng
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Zusammenfassung:We apply a four-term polynomial-interpolation extension of the van der Pauw Hall measurement technique to a 330 nm Mg-Pd bilayer during both absorption and desorption of hydrogen at room temperature. We show that standard versions of the van der Pauw DC Hall measurement technique produce an error of over 100% due to a drifting offset signal and can lead to unphysical interpretations of the physical processes occurring in this film. The four-term technique effectively removes this source of error, even when the offset signal is drifting by an amount larger than the Hall signal in the time interval between successive measurements. This technique can be used to increase the resolution of transport studies of any material in which the resistivity is rapidly changing, particularly when the material is changing from metallic to insulating behavior.
ISSN:0957-0233
1361-6501
DOI:10.1088/0957-0233/19/10/105106