Photonic time crystals: Theory and applications

Fuente: arXiv
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Hauptverfasser: Asgari, M. M., Garg, P., Wang, X., Mirmoosa, M. S., Rockstuhl, C., Asadchy, V.
Format: Preprint
Veröffentlicht: 2024
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author Asgari, M. M.
Garg, P.
Wang, X.
Mirmoosa, M. S.
Rockstuhl, C.
Asadchy, V.
author_facet Asgari, M. M.
Garg, P.
Wang, X.
Mirmoosa, M. S.
Rockstuhl, C.
Asadchy, V.
contents This tutorial offers a comprehensive overview of photonic time crystals - artificial materials whose electromagnetic properties are periodically modulated in time at scales comparable to the oscillation period of light while remaining spatially uniform. Being the temporal analogs to traditional photonic crystals, photonic time crystals differ in that they exhibit momentum bandgaps instead of energy bandgaps. The energy is not conserved within momentum bandgaps, and eigenmodes with exponentially growing amplitudes exist in the momentum bandgap. Such properties make photonic time crystals a fascinating novel class of artificial materials from a basic science and applied perspective. This tutorial overviews the fundamental electromagnetic equations governing photonic time crystals and explores the groundbreaking physical phenomena they support. Based on these properties, we also oversee a diverse range of applications they unlock. Different material platforms suitable for creating photonic time crystals are discussed and compared. Furthermore, we elaborate on the connections between wave amplification in photonic time crystals and parametric amplification mechanisms in electrical circuits and nonlinear optics. The tutorial will be helpful for readers with physics or engineering backgrounds. It is designed to serve as an introductory guide for beginners and to establish a reference baseline reflecting the current understanding for researchers in the field.
format Preprint
id arxiv_https___arxiv_org_abs_2404_04899
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Photonic time crystals: Theory and applications
Asgari, M. M.
Garg, P.
Wang, X.
Mirmoosa, M. S.
Rockstuhl, C.
Asadchy, V.
Optics
Applied Physics
This tutorial offers a comprehensive overview of photonic time crystals - artificial materials whose electromagnetic properties are periodically modulated in time at scales comparable to the oscillation period of light while remaining spatially uniform. Being the temporal analogs to traditional photonic crystals, photonic time crystals differ in that they exhibit momentum bandgaps instead of energy bandgaps. The energy is not conserved within momentum bandgaps, and eigenmodes with exponentially growing amplitudes exist in the momentum bandgap. Such properties make photonic time crystals a fascinating novel class of artificial materials from a basic science and applied perspective. This tutorial overviews the fundamental electromagnetic equations governing photonic time crystals and explores the groundbreaking physical phenomena they support. Based on these properties, we also oversee a diverse range of applications they unlock. Different material platforms suitable for creating photonic time crystals are discussed and compared. Furthermore, we elaborate on the connections between wave amplification in photonic time crystals and parametric amplification mechanisms in electrical circuits and nonlinear optics. The tutorial will be helpful for readers with physics or engineering backgrounds. It is designed to serve as an introductory guide for beginners and to establish a reference baseline reflecting the current understanding for researchers in the field.
title Photonic time crystals: Theory and applications
topic Optics
Applied Physics
url https://arxiv.org/abs/2404.04899