Abstract
The components of the electrical magnetoconductivity and magnetoresistivity tensors of indium were calculated by the path integral method with a formulation used previously for aluminum. Results presented for longitudinal and transverse magnetoresistance, the longitudinal–transverse components and the Hall term are compared with previous calculations for aluminum and with available experimental results of indium. The magnetoconductivity of aluminum for a four orthogonalized plane wave (OPW) pseudopotential Fermi surface model is reported for comparison with the single OPW calculations.
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