BCS in the Sky: Signatures of Inflationary Fermion Condensation
arXiv:2304.09428 · doi:10.1088/1475-7516/2024/04/022
Abstract
We consider a Bardeen-Cooper-Schrieffer (BCS)-like model in the inflationary background. We show that with an axial chemical potential, the attractive quartic fermion self-interaction can lead to a BCS-like condensation. In the rigid-de Sitter (dS) limit of inflation where backreaction from the inflaton and graviton is neglected, we perform the first computation of the non-perturbative effective potential that includes the full spacetime curvature effects in the presence of the chemical potential, subject to the mean-field approximation whose validity has been checked via the Ginzburg criterion. The corresponding BCS phase transition is always first-order, when the varying Hubble is interpreted as an effective Gibbons-Hawking temperature of dS spacetime. In the condensed phase, the theory can be understood from UV and IR sides as fermionic and bosonic, respectively. This leads to distinctive signatures in the primordial non-Gaussianity of curvature perturbations. Namely, the oscillatory cosmological collider signal is smoothly turned off at a finite momentum ratio, since different momentum ratios effectively probe different energy scales. In addition, such BCS phase transitions can also source stochastic gravitational waves, which are feasible for future experiments.
33 pages, 8 figures, v2: minor changes, typos corrected
References in corpus (24)
- Color superconductivity in dense quark matter
- Laser Interferometer Space Antenna
- The DESI Experiment Part I: Science,Targeting, and Survey Design
- Gravitational Wave Production by Collisions: More Bubbles
- Amplitude / Higgs Modes in Condensed Matter Physics
- Cosmological Collider Physics
- Cosmology with the SPHEREX All-Sky Spectral Survey
- Cutting Rule for Cosmological Collider Signals: A Bulk Evolution Perspective
- Helical Inflation Correlators: Partial Mellin-Barnes and Bootstrap Equations
- Bootstrapping One-Loop Inflation Correlators with the Spectral Decomposition
- Closed-Form Formulae for Inflation Correlators
- The cosmological BCS mechanism and the Big Bang Singularity
- Chemical-Potential-Assisted Particle Production in FRW Spacetimes
- Stable Asymptotically Free Extensions (SAFEs) of the Standard Model
- Gravitational Waves from an Inflation Triggered First-Order Phase Transition
- Superconducting loop quantum gravity and the cosmological constant
- Condensed dark matter with a Yukawa interaction
- Mapping the SMEFT to discoverable models
- Phase diagram of helically imbalanced QCD matter
- Gravity Induced Chiral Condensate Formation and the Cosmological Constant
- Leptogenesis and Neutrino Masses in an Inflationary SUSY Pati-Salam Model
- Dark Energy Problem in a Four-Fermion Interaction Model
- Ferromagnetic instability in PAAI in the sky
- PAAI in the sky : towards a particulate mechanism for Dark Energy and concordant Dark Matter
Cited by in corpus (5)
- Cosmological Correlators Through the Looking Glass: Reality, Parity, and Factorisation
- In-in formalism for the entropy of quantum fields in curved spacetimes
- Fingerprints of a Non-Inflationary Universe from Massive Fields
- Cold Dark Matter Based on an Analogy with Superconductivity
- Interacting Dirac fields in an expanding universe: dynamical condensates and particle production