2010Europhysics Letters (EPL)Requires access

An ab initio investigation of how residual resistivity can decrease when an alloy is deformed

S. Lowitzer, D. Ködderitzsch, H. Ebert, P. R. Tulip, Alberto Marmodoro, J. B. Staunton

Open publisher page 20 citations

Abstract

For a class of transition metal materials residual resistivity is observed to decrease when the materials are deformed and short-range order is removed. We investigate this counter-intuitive behavior with an ab initio theoretical study of the residual resistivity of several late transition metal-rich disordered alloys. The calculations are performed using the Korringa-Kohn-Rostoker (KKR) method applied to the Kubo-Greenwood formalism. The electronic effects arising from short-range ordering and clustering within the disorder are described using the non-local coherent-potential approximation (NL-CPA). We find a simple, general explanation of this K -state–like effect in terms of changes to the amplitude for d -electron hopping between majority late transition metal nearest-neighbor atoms at the Fermi energy.

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For a class of transition metal materials residual resistivity is observed to decrease when the materials are deformed and short-range order is removed. We investigate this counter-intuitive behavior with an ab initio theoretical study of the residual resistivity of several late transition metal-rich disordered alloys. The calculations are performed using the Korringa-Kohn-Rostoker (KKR) method applied to the Kubo-Greenwood formalism. The electronic effects arising from short-range ordering and clustering within the disorder are described using the non-local coherent-potential approximation (NL-CPA). We find a simple, general explanation of this K -state–like effect in terms of changes to the amplitude for d -electron hopping between majority late transition metal nearest-neighbor atoms at the Fermi energy.

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Available abstract

For a class of transition metal materials residual resistivity is observed to decrease when the materials are deformed and short-range order is removed. We investigate this counter-intuitive behavior with an ab initio theoretical study of the residual resistivity of several late transition metal-rich disordered alloys. The calculations are performed using the Korringa-Kohn-Rostoker (KKR) method applied to the Kubo-Greenwood formalism. The electronic effects arising from short-range ordering and clustering within the disorder are described using the non-local coherent-potential approximation (NL-CPA). We find a simple, general explanation of this K -state–like effect in terms of changes to the amplitude for d -electron hopping between majority late transition metal nearest-neighbor atoms at the Fermi energy.

Key concepts: Coherent potential approximation, Residual resistivity, Electrical resistivity and conductivity, Condensed matter physics, Ab initio, Formalism (music), Ab initio quantum chemistry methods, Residual

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