Squeezing of light from Planck-scale physics

Fuente: arXiv
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Main Authors: Artigas, Danilo, Martineau, Killian, Mielczarek, Jakub
Format: Preprint
Published: 2023
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author Artigas, Danilo
Martineau, Killian
Mielczarek, Jakub
author_facet Artigas, Danilo
Martineau, Killian
Mielczarek, Jakub
contents In this article, the possibility of generating non-classical light due to Planck-scale effects is considered. For this purpose, a widely studied model of deformation of the Heisenberg uncertainty relation is applied to single-mode and multi-mode lights. The model leads to a deformed dispersion relation, which manifests in an advancement in the time of arrival of photons. The key finding is that the model also leads to an oscillatory pattern of squeezing of the state of light. Furthermore, while the amplitude of the oscillations is constant for energy eigenstates, it exhibits linear growth over time for coherent states with the annihilation operator eigenvalue $α\neq0 $. This second case leads to the accumulation of squeezing and phase-space displacement, which can be significant for astrophysical photons. In particular, for $α\sim 1$, coherent light in the optical spectrum emitted at megaparsec distances would acquire squeezing with the amplitude of the order unity. This suggests that measurements of the non-classical properties of light originating from distant astrophysical sources may open a window to test these predictions.
format Preprint
id arxiv_https___arxiv_org_abs_2308_13788
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Squeezing of light from Planck-scale physics
Artigas, Danilo
Martineau, Killian
Mielczarek, Jakub
General Relativity and Quantum Cosmology
High Energy Physics - Theory
Quantum Physics
In this article, the possibility of generating non-classical light due to Planck-scale effects is considered. For this purpose, a widely studied model of deformation of the Heisenberg uncertainty relation is applied to single-mode and multi-mode lights. The model leads to a deformed dispersion relation, which manifests in an advancement in the time of arrival of photons. The key finding is that the model also leads to an oscillatory pattern of squeezing of the state of light. Furthermore, while the amplitude of the oscillations is constant for energy eigenstates, it exhibits linear growth over time for coherent states with the annihilation operator eigenvalue $α\neq0 $. This second case leads to the accumulation of squeezing and phase-space displacement, which can be significant for astrophysical photons. In particular, for $α\sim 1$, coherent light in the optical spectrum emitted at megaparsec distances would acquire squeezing with the amplitude of the order unity. This suggests that measurements of the non-classical properties of light originating from distant astrophysical sources may open a window to test these predictions.
title Squeezing of light from Planck-scale physics
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
Quantum Physics
url https://arxiv.org/abs/2308.13788