Abstract

Abstract The Sasaki phenomenon thermoelectric analogue (SPTA) consisting of the appearance, perpendicular to the temperature gradient of a thermoelectric field in cubic symmetry crystals has been theoretically investigated. Group-theoretical analysis of kinetic tensors at large temperature gradients has been made, the expression for SPTA electric field has been obtained, and the physical nature of the phenomenon and its value have been analysed. It has been suggested that SPTA be used for quick response film anisotropic thermoelement production.

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