Field theory in superfluid 3He: What are the lessons for particle physics, gravity and high-temperature superconductivity?
arXiv:cond-mat/9812381 · doi:10.1073/pnas.96.11.6042
Abstract
There are several classes of homogeneous Fermi-systems which are characterized by the topology of the energy spectrum of fermionic quasiparticles: (1) Gapless systems with a Fermi-surface; (2) Systems with a gap in their spectrum; (3) Gapless systems with topologically stable point nodes (Fermi points); and (4) Gapless systems with topologically unstable lines of nodes (Fermi lines). Superfluid 3He-A and electroweak vacuum belong to the universality Class (3). The fermionic quasiparticles (particles) in this class are chiral: they are left-handed or right-handed. The collective bosonic modes of systems of Class (3) are the effective gauge and gravitational fields. The great advantage of superfluid 3He-A is that we can perform experiments using this condensed matter and thereby simulate many phenomena in high energy physics, including axial anomaly, baryoproduction, and magnetogenesis. 3He-A textures induce a nontrivial effective metrics of the space, where the free quasiparticles move along geodesics. With 3He-A one can simulate event horizons, Hawking radiation, rotating vacuum, etc. High-temperature superconductors are believed to belong to Class (4). They have gapless fermionic quasiparticles with a "relativistic" spectrum close to gap nodes, which allows application of ideas developed for superfluid 3He-A.
RevTex file, 8 pages, 5 figures, submitted to Proc. Nat. Ac. Sc. US, modified after referee reports, references are added
References in corpus (11)
- Lorentz-Violating Extension of the Standard Model
- QCD at Finite Baryon Density: Nucleon Droplets and Color Superconductivity
- Event horizons and ergoregions in 3He
- Observation of d-wave scaling relations in the mixed-state specific heat of YBa2Cu3O7
- Classical tests for Weyl gravity: deflection of light and time delay
- Effective spacetime and Hawking radiation from moving domain wall in thin film of 3He-A
- Rotational quantum friction in superfluids: Radiation from object rotating in superfluid vacuum
- From Notes to Chords in QCD
- Implications of Cosmic Repulsion for Gravitational Theory
- Axial anomaly in 3He-A: Simulation of baryogenesis and generation of primordial magnetic field in Manchester and Helsinki
- What is quantum field theory and why have some physicists abandoned it?
Cited by in corpus (15)
- First direct observation of Dirac fermions in graphite
- Quantum Gravity: a Progress Report
- Superfluid analogies of cosmological phenomena
- Monopoles and fractional vortices in chiral superconductors
- Unexpectedly large surface gravities for acoustic horizons?
- Thermal quasi-equilibrium states across Landau horizons in the effective gravity of superfluids
- Momentum-Space Topology of Standard Model
- Coexistence of New Fermions in Topological Semimetal TaS
- Macroscopic parity violating effects and 3He-A
- Quantum gravity as a Fermi liquid
- Links between gravity and dynamics of quantum liquids
- Quantum Protectorate and Microscopic Models of Magnetism
- Topological nodal superconducting phases and topological phase transition in the hyperhoneycomb lattice
- A generalization of the Lorentz ether to gravity with general-relativistic limit
- On the condensed matter scheme for emergent gravity and interferometry