Inhomogeneous Cosmologies with Bumpy Structure from Superfluid Pionic Vortices and the propagation of electromagnetic field
Fabrizio Canfora, Alex Giacomini, Nikolaos Dimakis, Andronikos Paliathanasis
Abstract
In this work we introduce exact cosmological solutions in General Relativity in (3+1) dimensions which take into account both the usual fluid component as well as a superfluid component describing superfluid Pionic vortices. Such superfluid vortices are source of inhomogeneities which can be treated exactly, no perturbation theory is required. These analytic solutions are relevant to obtain a non-perturbative description of inhomogeneities in cosmology. We discuss the peculiar effects of these hadronic inhomogeneities on the propagation of electromagnetic fields on such cosmological backgrounds analyzing possible observable effects. Finally, the properties that the effective superfluid satisfy for such solutions to exist are discussed, together with possible extensions of this family of solutions.
Create a lesson
Related papers
Symmetry-Driven k-Essence Cosmological Dynamics
Andrés Lueiza-Colipí, Nikolaos Dimakis, Genly Leon et al.
Black Hole Shadow and Light Deflection in Generalized Heisenberg-Euler Nonlinear Electrodynamics
Beyhan Puliçe, Ali Övgün, Yosef Verbin
Shadow and Polarized Images of Schwarzschild-MOG Black Hole Illuminated by Thick Accretion Disk
Cheng Hu, Huan Ye, Hong Lei et al.
Second-order slow rotation of wormholes in Einstein-scalar-Gauss-Bonnet gravity
Sardor Murodov, Bekzod Rahmatov, Javlon Rayimbaev et al.
Causal structure and optical signatures of rotating power law Kalb-Ramond geometry
Hassan Hassanabadi, Orlando Luongo
Searching for gravitational wave echo with group equivariant neural posterior estimation
Jian-Wei Luo, Yun-Song Piao