The role of gauge symmetry in spintronics |
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Authors: | R.F. Sobreiro V.J. Vasquez Otoya |
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Affiliation: | aUFF - Universidade Federal Fluminense, Instituto de Física, Campus da Praia Vermelha, Av. General Milton Tavares de Souza s/n, 24210-346, Niterói, RJ, Brazil;bIFSEMG - Instituto Federal de Educação, Ciência e Tecnologia do Sudeste de Minas Gerais, Rua Bernardo Mascarenhas 1283, 36080-001, Juiz de Fora, MG, Brazil |
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Abstract: | In this work we employ a field theoretical approach to explain the nature of the non-conserved spin current in spintronics. In particular, we consider the usual U(1) gauge theory for the electromagnetism at classical level in order to obtain the broken continuity equation involving the spin current and spin-transfer torque. Inspired by the recent work of A. Vernes, B. L. Gyorffy and P. Weinberger where they obtain such an equation in terms of relativistic quantum mechanics, we formalize their result in terms of the well known currents of field theory such as the Bargmann–Wigner current and the chiral current. Thus, an interpretation of spintronics is provided in terms of Noether currents (conserved or not) and symmetries of the electromagnetism. In fact, the main result of the present work is that the non-conservation of the spin current is associated with the gauge invariance of physical observables where the breaking term is proportional to the chiral current. Moreover, we generalize their result by including the electromagnetic field as a dynamical field instead of an external one. |
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Keywords: | Gauge theories QED Relativistic spintronics |
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