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Auteurs principaux: Parvizi, Shahrokh, Shahbazi, Mojtaba
Format: Preprint
Publié: 2022
Sujets:
Accès en ligne:https://arxiv.org/abs/2203.15832
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author Parvizi, Shahrokh
Shahbazi, Mojtaba
author_facet Parvizi, Shahrokh
Shahbazi, Mojtaba
contents Analogue gravity helps to find some gravitational systems which are similar to the evolution of perturbation in condensed matter systems. These analogies provide a very good tool for either side. In other words, some aspects of gravity could be simulated in condensed matter laboratories. In this study, we are going to find an interpretation for computational complexity in condensed matter systems and the analogue of the uncertainty principle as the Lloyd bound. We show that this inequality roughly is equivalent to the KSS bound in the fluid/gravity duality and provides some experimental criteria to test the Lloyd bound in the laboratory.
format Preprint
id arxiv_https___arxiv_org_abs_2203_15832
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Computational Complexity in Analogue Gravity
Parvizi, Shahrokh
Shahbazi, Mojtaba
High Energy Physics - Theory
Analogue gravity helps to find some gravitational systems which are similar to the evolution of perturbation in condensed matter systems. These analogies provide a very good tool for either side. In other words, some aspects of gravity could be simulated in condensed matter laboratories. In this study, we are going to find an interpretation for computational complexity in condensed matter systems and the analogue of the uncertainty principle as the Lloyd bound. We show that this inequality roughly is equivalent to the KSS bound in the fluid/gravity duality and provides some experimental criteria to test the Lloyd bound in the laboratory.
title Computational Complexity in Analogue Gravity
topic High Energy Physics - Theory
url https://arxiv.org/abs/2203.15832