Quantum Euler angles and agency-dependent spacetime

Fuente: arXiv
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Main Authors: Amelino-Camelia, Giovanni, D'Esposito, Vittorio, Fabiano, Giuseppe, Frattulillo, Domenico, Hoehn, Philipp A., Mercati, Flavio
Format: Preprint
Published: 2022
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author Amelino-Camelia, Giovanni
D'Esposito, Vittorio
Fabiano, Giuseppe
Frattulillo, Domenico
Hoehn, Philipp A.
Mercati, Flavio
author_facet Amelino-Camelia, Giovanni
D'Esposito, Vittorio
Fabiano, Giuseppe
Frattulillo, Domenico
Hoehn, Philipp A.
Mercati, Flavio
contents Quantum gravity is expected to introduce quantum aspects into the description of reference frames. Here we set the stage for exploring how quantum gravity induced deformations of classical symmetries could modify the transformation laws among reference frames in an effective regime. We invoke the quantum group $SU_q(2)$ as a description of deformed spatial rotations and interpret states of a representation of its algebra as describing the relative orientation between two reference frames. This leads to a quantization of one of the Euler angles and to the new paradigm of agency-dependence: space is reconstructed as a collection of fuzzy points, exclusive to each agent, which depends on their choice of reference frame. Each agent can choose only one direction in which points can be sharp, while points in all other directions become fuzzy in a way that depends on this choice. Two agents making different choices will thus observe the same points with different degrees of fuzziness.
format Preprint
id arxiv_https___arxiv_org_abs_2211_11347
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Quantum Euler angles and agency-dependent spacetime
Amelino-Camelia, Giovanni
D'Esposito, Vittorio
Fabiano, Giuseppe
Frattulillo, Domenico
Hoehn, Philipp A.
Mercati, Flavio
General Relativity and Quantum Cosmology
Quantum Physics
Quantum gravity is expected to introduce quantum aspects into the description of reference frames. Here we set the stage for exploring how quantum gravity induced deformations of classical symmetries could modify the transformation laws among reference frames in an effective regime. We invoke the quantum group $SU_q(2)$ as a description of deformed spatial rotations and interpret states of a representation of its algebra as describing the relative orientation between two reference frames. This leads to a quantization of one of the Euler angles and to the new paradigm of agency-dependence: space is reconstructed as a collection of fuzzy points, exclusive to each agent, which depends on their choice of reference frame. Each agent can choose only one direction in which points can be sharp, while points in all other directions become fuzzy in a way that depends on this choice. Two agents making different choices will thus observe the same points with different degrees of fuzziness.
title Quantum Euler angles and agency-dependent spacetime
topic General Relativity and Quantum Cosmology
Quantum Physics
url https://arxiv.org/abs/2211.11347