Zeeman splitting and nonlinear field-dependence in superfluid 3He
arXiv:1208.2650 · doi:10.1007/s10909-012-0692-6
Abstract
We have studied the acoustic Faraday effect in superfluid 3He up to significantly larger magnetic fields than in previous experiments achieving rotations of the polarization of transverse sound as large as 1710^{\circ}. We report nonlinear field effects, and use the linear results to determine the Zeeman splitting of the imaginary squashing mode (ISQ) frequency in 3He-B.
7 pages, 5 figures, to appear in JLTP
References in corpus (2)
Cited by in corpus (15)
- Higgs bosons in particle physics and in condensed matter
- Light Higgs channel of the resonant decay of magnon condensate in superfluid He-B
- The Nambu sum rule and the relation between the masses of composite Higgs bosons
- Persistent oscillations of the order parameter and interaction quench phase diagram for a confined Bardeen-Cooper-Schrieffer Fermi gas
- Hall Viscosity and the Acoustic Faraday Effect
- Fano resonance through Higgs bound states in tunneling of Nambu-Goldstone modes
- Damping of the Higgs and Nambu-Goldstone modes of superfluid Bose gases at finite temperatures
- Magnon Bose-Einstein condensates: from time crystals and quantum chromodynamics to vortex sensing and cosmology
- Scalar excitation with Leggett frequency in He-B and the GeV Higgs particle in top quark condensation models as Pseudo - Goldstone bosons
- Orientation of the Angular Momentum in Superfluid 3He-A in a Stretched Aerogel
- Response of the Higgs amplitude mode of superfluid Bose gases in a three dimensional optical lattice
- Nonlinear field-dependence and f-wave interactions in superfluid 3He
- Localized Higgs modes of superfluid Bose gases in optical lattices: A Guzwiller mean-field study
- Topological Higgs Amplitude Modes in Strongly Interacting Superfluids
- Higgs and Nambu-Goldstone modes in a spin-1 model with long-range interactions