Fundamental limits in photonics and electromagnetics: a tutorial

Fuente: arXiv
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Main Authors: Miller, Owen D., Monticone, Francesco
Format: Preprint
Published: 2026
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author Miller, Owen D.
Monticone, Francesco
author_facet Miller, Owen D.
Monticone, Francesco
contents Theoretical limits and physical bounds across many areas of science, mathematics, and technology -- including Shannon's information-capacity limits, Bennett and Landauer's thermodynamic limits on computation, and Gödel's incompleteness theorem in formal logic -- serve as defining pillars of their fields. In photonics and electromagnetism, numerous physical bounds and constraints have likewise been uncovered over the past several decades. In this Tutorial, we first review the fundamental principles that constrain light-matter interactions, and then discuss limits at different hierarchical scales, from optical material responses to wave propagation, scattering, and related optical phenomena and functions, relevant to a wide range of applications. By providing a more unified treatment of these results and highlighting the many open questions that remain, our goal is to help readers rapidly get up to speed with the frontier of this research area and contribute to advancing the broader vision of a universal framework for fundamental limits of light interactions with matter.
format Preprint
id arxiv_https___arxiv_org_abs_2605_24738
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Fundamental limits in photonics and electromagnetics: a tutorial
Miller, Owen D.
Monticone, Francesco
Optics
Theoretical limits and physical bounds across many areas of science, mathematics, and technology -- including Shannon's information-capacity limits, Bennett and Landauer's thermodynamic limits on computation, and Gödel's incompleteness theorem in formal logic -- serve as defining pillars of their fields. In photonics and electromagnetism, numerous physical bounds and constraints have likewise been uncovered over the past several decades. In this Tutorial, we first review the fundamental principles that constrain light-matter interactions, and then discuss limits at different hierarchical scales, from optical material responses to wave propagation, scattering, and related optical phenomena and functions, relevant to a wide range of applications. By providing a more unified treatment of these results and highlighting the many open questions that remain, our goal is to help readers rapidly get up to speed with the frontier of this research area and contribute to advancing the broader vision of a universal framework for fundamental limits of light interactions with matter.
title Fundamental limits in photonics and electromagnetics: a tutorial
topic Optics
url https://arxiv.org/abs/2605.24738