Abstract

We report a non-trivial feature of the vacuum structure of free massive or massless Dirac fields in the hyperbolic de Sitter spacetime. Here we have two causally disconnected regions, say R and L separated by another region, C. We are interested in the field theory in Rcup L to understand the long range quantum correlations between R and L. There are local modes of the Dirac field having supports individually either in R or L, as well as global modes found via analytically continuing the R modes to L and vice versa. However, we show that unlike the case of a scalar field, the analytic continuation does not preserve the orthogonality of the resulting global modes. Accordingly, we need to orthonormalise them following the Gram–Schmidt prescription, prior to the field quantisation in order to preserve the canonical anti-commutation relations. We observe that this prescription naturally incorporates a spacetime independent continuous parameter, theta _{mathrm{RL}}, into the picture. Thus interestingly, we obtain a naturally emerging one-parameter family of alpha -like de Sitter vacua. The values of theta _{mathrm{RL}} yielding the usual thermal spectra of massless created particles are pointed out. Next, using these vacua, we investigate both entanglement and Rényi entropies of either of the regions and demonstrate their dependence on theta _{mathrm{RL}}.

Highlights

  • It is interesting to investigate the long range quantum correlations between two observers in the de Sitter (dS) space, causally separated but so by a large distance, say of the order of the superhorizon size

  • Since R and L are separated by an entire causally disconnected region C, the framework described by Fig. 1 offers a very natural stage to investigate such long range non-local quantum correlations

  • Let us first briefly review the case of a real scalar field [7]

Read more

Summary

Introduction

It is interesting to investigate the long range quantum correlations between two observers in the dS space, causally separated but so by a large distance, say of the order of the superhorizon size In [42], the entanglement properties of a Dirac fermion in the hyperbolic dS was discussed and certain qualitative differences with a scalar field were pointed out. We wish to demonstrate a natural emergence of de Sitter α-like vacua for Dirac fermions in the hyperbolic de Sitter spacetime This is the main result of this paper.

The Dirac modes in hyperbolic dS
Constructing the global orthonormal modes
The field quantisation and the Bogoliubov coefficients
The entanglement entropy
The Rényi entropy
Discussions
Full Text
Paper version not known

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.