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Fermi points and the Nambu sum rule in the polar phase of $^3$He

Published 5 May 2017 in cond-mat.mes-hall and hep-ph | (1705.02231v1)

Abstract: We discuss the polar phase of $3$He, which is realized in the anisotropic aerogel. We consider it in the framework of the BCS model. In the absence of the spin - orbit interaction this model predicts the appearance of the Fermi line. However, it is topologically unstable. We demonstrate, that the spin - orbit interaction gives rise to the appearance of the two Fermi points instead of the Fermi line. In addition to the gapless Nambu - Goldstone bosons in this system the collective gapped bosonic states exist. Their gaps are calculated, and the corresponding Nambu sum rule is established.

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