Real-space entanglement in the Cosmic Microwave Background
arXiv:2106.15100 · doi:10.1088/1475-7516/2021/10/036
Abstract
We compute the entanglement entropy, mutual information and quantum discord of the Cosmic Microwave Background (CMB) fluctuations in real space. To that end, we first show that measurements of these fluctuations at two distinct spatial locations can be described by a bipartite, continuous Gaussian system. This leads to explicit formulas for the mutual information and the quantum discord in terms of the Fourier-space power spectra of the curvature perturbation. We then find that quantum entanglement, that builds up in Fourier space between opposite wave momenta as an effect of quantum squeezing, is transferred to real space. In particular, both the mutual information and quantum discord, which decay as the fourth power of the distance between the two measurements in flat space time, asymptotes a constant in cosmological backgrounds. At the scales probed in the CMB however, they are highly suppressed, while they can reach order-one values at much smaller scales, where primordial black holes could have formed.
companion of arXiv:2106.14575, 37 pages without appendices (total 46 pages), 7 figures, typos corrected in equations (A.8), (A.10), (A.13), (A.15)
References in corpus (9)
- Gravitational waves from a universe filled with primordial black holes
- Remarks on the entanglement entropy for disconnected regions
- Collapse of Small-Scale Density Perturbations during Preheating in Single Field Inflation
- Bell violation in the Sky
- Quantum discord in de Sitter space
- Primordial black holes from metric preheating: mass fraction in the excursion-set approach
- Infinite violation of Bell inequalities in inflation
- The Quantum Information of Cosmological Correlations
- Real-space entanglement of quantum fields
Cited by in corpus (23)
- Discord and Decoherence
- Cosmological Krylov Complexity
- Comparing quantumness criteria
- Real-space Bell inequalities in de Sitter
- Quantum entanglement in cosmology
- Does inflation squeeze cosmological perturbations?
- In-in formalism for the entropy of quantum fields in curved spacetimes
- Entanglement and Expansion
- Real-space quantum-to-classical transition of time dependent background fluctuations
- Toward the Observation of Entangled Pairs in BEC analogue Expanding Universes
- Quantum diffusion and large primordial perturbations from inflation
- Universal role of curvature in vacuum entanglement
- Entanglement in an expanding toroidal Bose-Einstein condensate
- Entanglement in Cosmology
- A Flat Space Analogue for the Quantum Origin of Structure
- Distinguishing cosmological models through quantum signatures of primordial perturbations
- Counting statistics of ultra-broadband microwave photons
- Entanglement and correlations between local observables in de Sitter spacetime
- Violation of Bell inequalities from Cosmic Microwave Background data
- Entanglement entropy evolution during gravitational collapse
- The area and volume laws for entanglement of scalar fields in flat and cosmological spacetimes
- Schwinger-Keldysh path integral formalism for a Quenched Quantum Inverted Oscillator
- Intrinsic Entropy of Squeezed Quantum Fields and Nonequilibrium Quantum Dynamics of Cosmological Perturbations