Why is the universe not frozen by the quantum Zeno effect?

Fuente: arXiv
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Autore principale: Soulas, Antoine
Natura: Preprint
Pubblicazione: 2024
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author Soulas, Antoine
author_facet Soulas, Antoine
contents We build a discrete model that simulates the ubiquitous competition between the free internal evolution of a two-level system and the decoherence induced by the interaction with its surrounding environment. It is aimed at being as universal as possible, so that no specific Hamiltonian is assumed. This leads to an analytic criterion, depending on the level of short time decoherence, allowing to determine whether the system will freeze due to the Zeno effect. We check this criterion on several classes of functions which correspond to different physical situations. In the most generic case, the free evolution wins over decoherence, thereby explaining why the universe is indeed not frozen. We finally make a quantitative comparison with the continuous model of Presilla, Onofrio and Tambini, based on a Lindblad's master equation, a find good agreement at least in the low coupling regime.
format Preprint
id arxiv_https___arxiv_org_abs_2404_01913
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Why is the universe not frozen by the quantum Zeno effect?
Soulas, Antoine
Quantum Physics
Mathematical Physics
We build a discrete model that simulates the ubiquitous competition between the free internal evolution of a two-level system and the decoherence induced by the interaction with its surrounding environment. It is aimed at being as universal as possible, so that no specific Hamiltonian is assumed. This leads to an analytic criterion, depending on the level of short time decoherence, allowing to determine whether the system will freeze due to the Zeno effect. We check this criterion on several classes of functions which correspond to different physical situations. In the most generic case, the free evolution wins over decoherence, thereby explaining why the universe is indeed not frozen. We finally make a quantitative comparison with the continuous model of Presilla, Onofrio and Tambini, based on a Lindblad's master equation, a find good agreement at least in the low coupling regime.
title Why is the universe not frozen by the quantum Zeno effect?
topic Quantum Physics
Mathematical Physics
url https://arxiv.org/abs/2404.01913