Skip to search boxSkip to navigationSkip to main content

MeV Dark Energy Emission from a De Sitter Universe

  • Yasmín B. Alcántara-Pérez
    ,
  • Miguel A. García-Aspeitia(corresponding author)
    ,
  • ,
  • Alberto Hernández-Almada
*Corresponding author for this work
Research Output:
Contribution to journal
Article
Peer-review

Open access

Publication metrics

Metrics

SciVal
FWCI
0.39
SciVal
Author count
4
SciVal
Paper percentile
45
SciVal
Citations
5
Scopus
Citations

PlumX, opens in new tab

Citations
5
Mentions
1

Abstract

The evolution of a de Sitter Universe is the basis for both the accelerated Universe and the late-stationary Universe. So, how do we differentiate between both universes? In this paper, we state that it is not possible to design an experiment using luminous or angular distances to distinguish between the two cases because they are the same during the de Sitter phase. However, this equivalence allows us prediction of the signal of a constant dark energy emission with a signal peak around 29.5 MeV, in which, according to our astrophysical test of survival probability, the radiation must be non-standard photons. Remarkably, experiments by EGRET and COMPTEL have observed an excess of gamma photons in this predicted region, coming from a possible decay process of dark energy emission, which may constitute the smoking gun of a late-stationary Universe with the continuous creation of non-standard radiation, an alternative approach to understanding the current stages of the Universe’s evolution.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

513

Journal (Volume, Issue Number)

Universe (Volume 9, Issue 12)

Publication milestones

  • Accepted/In press - 28/11/2023
  • Published - 12/2023

Publication status

Published - 12/2023

Publication IDs

  • Scopus: 85180494445
  • Scopus: 85180494445

Funding Details

We thank the anonymous referees for their thoughtful remarks and suggestions. The numerical analysis was carried out by Numerical Integration for Cosmological Theory and Experiments in High-energy Astrophysics (Nicte Ha) cluster at IBERO University, acquired through cátedra MM support. A.H.-A. thank for the support from Luis Aguilar, Alejandro de León, Carlos Flores, and Jair García of the Laboratorio Nacional de Visualización Científica Avanzada. A.H.-A. and M.A.G.-A. acknowledge partial support from project ANID Vinculación Internacional FOVI220144. We are also grateful to Verónica Motta for revising this paper, suggesting changes, and correcting misinterpretations in the text. This paper is in memory of my father Miguel Ángel. Y.B.A.-P. acknowledges the Ph.D. grant provided by CONACYT. M.A.G.-A. acknowledges support from cátedra Marcos Moshinsky and Universidad Iberoamericana for the support with the National Research System (SNI) grant.
FundersFunding numbers
ANID Vinculación Internacional
FOVI220144
Laboratorio Nacional de Visualización Científica Avanzada
-
National Research System
-
cátedra Marcos Moshinsky and Universidad Iberoamericana
-
CONACYT
-
SNI
-