Superhorizon entanglement from inflationary particle production
arXiv:2312.11419 · doi:10.1103/PhysRevD.109.123520
Abstract
We investigate entanglement generation between the sub- and super-Hubble modes of inflaton fluctuations, in the context of particle production from perturbations during inflation. We consider a large-field inflationary scenario where inflation is driven by a vacuum energy symmetry breaking potential and the scalar inflaton field is nonminimally coupled to spacetime curvature. In particular, we focus on the slow-roll phase, adopting a quasi-de Sitter scale factor to properly account for the presence of perturbations and computing the pair production probability associated to the coupling between the inflaton and spacetime inhomogeneities. The interaction Lagrangian at first order is constructed from inhomogeneities induced by the inflaton dynamics, and the initial Bunch-Davies vacuum state of the field evolves under the action of such Lagrangian. In this framework, we quantify the total amount of entanglement via the von Neumann entropy of the reduced density operator for superhorizon modes, tracing out sub-Hubble degrees of freedom. We then compare these outcomes with entanglement production for quadratic chaotic inflation and for a small-field quadratic hilltop scenario, preserving field-curvature coupling in both cases and pointing out the main differences between large and small-field approaches. We show that the amount of entanglement entropy arising from such geometric production grows rapidly in slow-roll regime and that it is typically higher in large-field scenarios. We also discuss our outcomes in light of recent findings for the squeezing entropy of cosmological perturbations and cubic nonlinearities in de Sitter space.
11 pages, 2 figures
References in corpus (19)
- Reheating in Inflationary Cosmology: Theory and Applications
- Cosmological Particle Production: A Review
- Entanglement dynamics for uniformly accelerated two-level atoms
- Minimal decoherence from inflation
- Entangled de Sitter from Stringy Axionic Bell pair I: An analysis using Bunch Davies vacuum
- Alleviating the cosmological constant problem from particle production
- Universal signature of quantum entanglement across cosmological distances
- Dynamics and quantum entanglement of two-level atoms in de Sitter spacetime
- Backreaction in Cosmology
- Fully Relativistic Entanglement Harvesting
- Entanglement dynamics in de Sitter spacetime
- Inflationary entanglement
- A Model For Late Dark Matter Decay
- Real-space quantum-to-classical transition of time dependent background fluctuations
- A general study of decaying scalar dark matter: existing limits and projected radio signals at the SKA
- Tunable Coupler for Mediating Interactions between a Two-Level System and a Waveguide from a Decoupled State to the Ultra-Strong Coupling Regime
- On the origin of entropy of gravitationally produced dark matter: the entanglement entropy
- Role of spatial higher order derivatives in momentum space entanglement
- Entanglement negativity in de Sitter biverse from Stringy Axionic Bell pair: An analysis using Bunch-Davies vacuum
Cited by in corpus (8)
- Quantum entanglement in cosmology
- In-in formalism for the entropy of quantum fields in curved spacetimes
- Production of ultralight dark matter from inflationary spectator fields
- Gravitational metamaterials from optical properties of spacetime media
- Comparing geometric and gravitational particle production in Jordan and Einstein frames
- Imprints of screened dark energy on nonlocal quantum correlations
- How cosmological expansion affects communication between distant quantum systems
- Entanglement entropy evolution during gravitational collapse