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Thermal Hall Transport in Confined Superfluid <sup>3</sup>He

ORAL

Abstract

NMR experiments on liquid 3He infused into uniaxially anisotropic silica aerogels show the stabilisation of two equal-spin-pairing (ESP) chiral phases on cooling from the normal phase. The alignment of the chiral axis relative to the anisotropy axis for these phases is predicted to depend upon temperature. A chiral A-like phase is also stabilized when 3He is confined to a slab of thickness D ≈ ξ, the superfluid coherence length. For both types of confinement, scattering of quasiparticles by the random potential - aerogel or surface - is pair breaking and generates a sub-gap density of quasiparticle states (DOS). The random field also conspires with the chiral order parameter to generate skew scattering of quasiparticles in the plane normal to the chiral axis. This scattering mechanism leads to anomalous thermal Hall transport for nonequilibrium quasiparticles driven by a thermal gradient. We report theoretical results for the anomalous thermal Hall conductivity for theoretical models for chiral phases of 3He in both anisotropic aerogel and slabs, including the proposed biaxial chiral phase.

Presenters

  • Priya Sharma

    Royal Holloway Univ of London

Authors

  • Priya Sharma

    Royal Holloway Univ of London

  • James A Sauls

    Northwestern University

  • Anton Vorontsov

    Montana State University, Bozeman