The cosmological constant: A lesson from the effective gravity of topological Weyl media
arXiv:1108.5086 · doi:10.1134/S0021364012160035
Abstract
Topological matter with Weyl points, such as superfluid 3He-A, provide an explicit example where there is a direct connection between the properly determined vacuum energy and the cosmological constant of the effective gravity emerging in condensed matter. This is in contrast to the acoustic gravity emerging in Bose-Einstein condensates, where the "value of this constant cannot be easily predicted by just looking at the ground state energy of the microscopic system from which spacetime and its dynamics should emerge" (S. Finazzi, S. Liberati and L. Sindoni, The cosmological constant: a lesson from Bose-Einstein condensates, Phys. Rev. Lett. 108, 071101 (2012)). The advantage of topological matter is that the relativistic fermions and gauge bosons emerging near the Weyl point obey the same effective metric and thus the effective gravity is more closely related to real gravity. We study this connection in the bi-metric gravity emerging in 3He-A, and its relation to the graviton masses, by comparison with a fully relativistic bi-metric theory of gravity. This shows that the parameter λ, which in 3He-A is the bi-metric generalization of the cosmological constant, coincides with the difference in the proper energy of the vacuum in two states (the nonequilibrium state without gravity and the equilibrium state in which gravity emerges) and is on the order of the characteristic Planck energy scale of the system. Although the cosmological constant λ is huge, the cosmological term itself is naturally non-constant and vanishes in the equilibrium vacuum, as dictated by thermodynamics. This suggests that the equilibrium state of any system including the final state of the Universe is not gravitating.
7 pages, no figures
References in corpus (15)
- Bimetric Gravity from Ghost-free Massive Gravity
- Adler-Bell-Jackiw anomaly in Weyl semi-metals: Application to Pyrochlore Iridates
- Gravitational Anomalies and Thermal Hall effect in Topological Insulators
- The Hawking-Unruh phenomenon on graphene
- Self-tuning vacuum variable and cosmological constant
- Dynamic vacuum variable and equilibrium approach in cosmology
- Graphene and the Zermelo Optical Metric of the BTZ Black Hole
- Conformal Lifshitz Gravity from Holography
- Weyl-Gauge Symmetry of Graphene
- Vacuum Energy: Myths and Reality
- Gravity and Nonequilibrium Thermodynamics of Classical Matter
- Quantum electrodynamics with anisotropic scaling: Heisenberg-Euler action and Schwinger pair production in the bilayer graphene
- A real Lorentz-FitzGerald contraction
- Schwinger pair creation in multilayer graphene
- De-Sitter-spacetime instability from a nonstandard vector field
Cited by in corpus (6)
- Probing the scale invariance of the inflationary power spectrum in expanding quasi-two-dimensional dipolar condensates
- Emergent gravitational dynamics in relativistic Bose--Einstein condensate
- Electromagnetism as an emergent phenomenon: a step-by-step guide
- Cosmic Microwave Background and the issue of a fundamental preferred frame
- The CMB, preferred reference system and dragging of light in the earth frame
- Dark energy effects in the Schrödinger-Newton approach