Spatiotemporal symmetries and energy-momentum conservation in uniform spacetime metamaterials

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Main Authors: Liberal, Iñigo, Ganfornina-Andrades, Antonio, Vázquez-Lozano, J. Enrique
Format: Preprint
Published: 2024
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author Liberal, Iñigo
Ganfornina-Andrades, Antonio
Vázquez-Lozano, J. Enrique
author_facet Liberal, Iñigo
Ganfornina-Andrades, Antonio
Vázquez-Lozano, J. Enrique
contents Spacetime metamaterials (ST-MMs) are opening new regimes of light-matter interactions based on the breaking of temporal and spatial symmetries, as well as intriguing concepts associated with synthetic motion. In this work, we investigate the continuous spatiotemporal translation symmetry of ST-MMs with uniform modulation velocity. Using Noether theorem, we demonstrate that such symmetry entails the conservation of the energy-momentum. We highlight how energy-momentum conservation imposes constraints on the range of allowed light-matter interactions within ST-MMs, as illustrated with examples of the collision of electromagnetic and modulation pulses. Furthermore, we discuss the similarities and differences between the conservation of energy-momentum and relativistic effects. We believe that our work provides a step forward in clarifying the fundamental theory underlying ST-MMs.
format Preprint
id arxiv_https___arxiv_org_abs_2407_15592
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Spatiotemporal symmetries and energy-momentum conservation in uniform spacetime metamaterials
Liberal, Iñigo
Ganfornina-Andrades, Antonio
Vázquez-Lozano, J. Enrique
Optics
Mesoscale and Nanoscale Physics
Applied Physics
Spacetime metamaterials (ST-MMs) are opening new regimes of light-matter interactions based on the breaking of temporal and spatial symmetries, as well as intriguing concepts associated with synthetic motion. In this work, we investigate the continuous spatiotemporal translation symmetry of ST-MMs with uniform modulation velocity. Using Noether theorem, we demonstrate that such symmetry entails the conservation of the energy-momentum. We highlight how energy-momentum conservation imposes constraints on the range of allowed light-matter interactions within ST-MMs, as illustrated with examples of the collision of electromagnetic and modulation pulses. Furthermore, we discuss the similarities and differences between the conservation of energy-momentum and relativistic effects. We believe that our work provides a step forward in clarifying the fundamental theory underlying ST-MMs.
title Spatiotemporal symmetries and energy-momentum conservation in uniform spacetime metamaterials
topic Optics
Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2407.15592