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- W2113604517 abstract "Measurement of the local electronic lifetimes via the de Haas-van Alphen (dHvA) effect depends on the development of reliable techniques for amplitude measurements in well-characterized crystals. Some methods for avoiding both systematic and random errors were developed in a study of the effect of lattice dislocations on the dHvA scattering temperature in copper, using the field-modulation technique. The techniques described here include characterization of crystal purity and microstructure; precise orientation of the crystal in situ; precise field homogenization; control of modulation amplitude; and avoiding errors due to incomplete penetration of the modulation field, magnetic interaction, and magneto-resistance oscillations. In addition, representative amplitude measurements are presented for copper crystals containing a well-defined array of lattice dislocations. The results demonstrate that consistently high values of the scattering temperature typically observed in earlier measurements have an explanation as a dislocation effect. This effect is several orders of magnitude stronger in dHvA measurements than in electrical resistivity, and will therefore be important in any application of the dHvA effect to study scattering problems." @default.
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- W2113604517 date "1972-08-01" @default.
- W2113604517 modified "2023-10-09" @default.
- W2113604517 title "Techniques for the measurement of electron scattering using the de Haas-van Alphen effect: application to dislocations in copper" @default.
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- W2113604517 doi "https://doi.org/10.1063/1.1661718" @default.
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