Primordial power spectrum from an objective collapse mechanism: The simplest case

Fuente: arXiv
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Autores principales: Ocampo, Martin Miguel, Palermo, Octavio, León, Gabriel, Bengochea, Gabriel R.
Formato: Preprint
Publicado: 2024
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author Ocampo, Martin Miguel
Palermo, Octavio
León, Gabriel
Bengochea, Gabriel R.
author_facet Ocampo, Martin Miguel
Palermo, Octavio
León, Gabriel
Bengochea, Gabriel R.
contents In this work we analyzed the physical origin of the primordial inhomogeneities during the inflation era. The proposed framework is based, on the one hand, on semiclassical gravity, in which only the matter fields are quantized and not the spacetime metric. Secondly, we incorporate an objective collapse mechanism based on the Continuous Spontaneous Localization (CSL) model, and we apply it to the wavefunction associated with the inflaton field. This is introduced due to the close relation between cosmology and the so-called ``measurement problem'' in Quantum Mechanics. In particular, in order to break the homogeneity and isotropy of the initial Bunch-Davies vacuum, and thus obtain the inhomogeneities observed today, the theory requires something akin to a ``measurement'' (in the traditional sense of Quantum Mechanics). This is because the linear evolution driven by Schrödinger's equation does not break any initial symmetry. The collapse mechanism given by the CSL model provides a satisfactory mechanism for breaking the initial symmetries of the Bunch-Davies vacuum. The novel aspect in this work is that the constructed CSL model arises from the simplest choices for the collapse parameter and operator. From these considerations, we obtain a primordial spectrum that has the same distinctive features as the standard one, which is consistent with the observations from the Cosmic Microwave Background.
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id arxiv_https___arxiv_org_abs_2411_04816
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Primordial power spectrum from an objective collapse mechanism: The simplest case
Ocampo, Martin Miguel
Palermo, Octavio
León, Gabriel
Bengochea, Gabriel R.
General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
Quantum Physics
In this work we analyzed the physical origin of the primordial inhomogeneities during the inflation era. The proposed framework is based, on the one hand, on semiclassical gravity, in which only the matter fields are quantized and not the spacetime metric. Secondly, we incorporate an objective collapse mechanism based on the Continuous Spontaneous Localization (CSL) model, and we apply it to the wavefunction associated with the inflaton field. This is introduced due to the close relation between cosmology and the so-called ``measurement problem'' in Quantum Mechanics. In particular, in order to break the homogeneity and isotropy of the initial Bunch-Davies vacuum, and thus obtain the inhomogeneities observed today, the theory requires something akin to a ``measurement'' (in the traditional sense of Quantum Mechanics). This is because the linear evolution driven by Schrödinger's equation does not break any initial symmetry. The collapse mechanism given by the CSL model provides a satisfactory mechanism for breaking the initial symmetries of the Bunch-Davies vacuum. The novel aspect in this work is that the constructed CSL model arises from the simplest choices for the collapse parameter and operator. From these considerations, we obtain a primordial spectrum that has the same distinctive features as the standard one, which is consistent with the observations from the Cosmic Microwave Background.
title Primordial power spectrum from an objective collapse mechanism: The simplest case
topic General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
Quantum Physics
url https://arxiv.org/abs/2411.04816