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Resonant quasiparticle-ion scattering in anisotropic superfluid sup 3 He

Journal Article · · Physical Review, B: Condensed Matter; (USA)
;  [1]
  1. Low Temperature Laboratory, Helsinki University of Technology, 02150 Espoo (FI)
Low-energy excitations in quantum fluids are most directly encountered by ions. In the superfluid phases of {sup 3}He the relevant elementary excitations are Bogoliubov quasiparticles, which undergo repeated scattering off an ion in the presence of a divergent density of states. We present a quantum-mechanical calculation of the resonant {sup 3}He quasiparticle-scattering-limited mobility for negative ions in the anisotropic bulk {sup 3}He-{ital A} ({ital A} phase) and {sup 3}He-{ital P} (polar phase) that is exact when the quasiparticles scatter elastically. We develop a numerical scheme to solve the singular equations for quasiparticle-ion scattering in the {ital A} and {ital P} phases. Both of these superfluid phases feature a uniaxially symmetric order parameter but distinct topology for the magnitude of the energy gap on the Fermi sphere, i.e., points versus lines of nodes. In particular, the perpetual orbital circulation of Cooper pairs in {sup 3}He-{ital A} results in a novel, purely quantum-mechanical intrinsic Magnus effect, which is absent in the polar phase, where Cooper pairs possess no spontaneous orbital angular momentum. This is of interest also for transport properties of heavy-fermion superconductors. We discuss the {sup 3}He quasiparticle-ion cross sections, which allow one to account for the mobility data with essentially no free parameters. The calculated mobility thus facilitates an introduction of ion spectroscopy'' to extract useful information on fundamental properties of the superfluid state, such as the temperature dependence of the energy gap in {sup 3}He-{ital A}.
OSTI ID:
7134724
Journal Information:
Physical Review, B: Condensed Matter; (USA), Journal Name: Physical Review, B: Condensed Matter; (USA) Journal Issue: 7 Vol. 41:7; ISSN 0163-1829; ISSN PRBMD
Country of Publication:
United States
Language:
English

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