Masaq Index
arXiv 2012-09-04 DOI 10.1143/JPSJ.81.113602 0 views

Microscopic Theory of Magnon-Drag Thermoelectric Transport in Ferromagnetic Metals

Miura, Daisuke · Sakuma, Akimasa

Original · EN

A theoretical study of the magnon-drag Peltier and Seebeck effects in ferromagnetic metals is presented. A magnon heat current is described perturbatively from the microscopic viewpoint with respect to electron--magnon interactions and the electric field. Then, the magnon-drag Peltier coefficient Π is obtained as the ratio between the magnon heat current and the electric charge current. We show that Π=C T⁵/² at a low temperature T; that the coefficient C is proportional to the spin polarization P of the electric conductivity; and that P>0 for C<0, but P<0 for C>0. From experimental results for magnon-drag Peltier effects, we estimate that the strength of the electron--magnon interaction is about 0.3 eV·Å³/² for permalloy.

English translation

This paper has no Arabic translation yet. Be the first: it takes a few seconds, and the result is stored for every future reader.

Security check

Type the characters above

Up to 10 translations per person per day.