Kramers-Kronig relations via Laplace formalism and $L^1$ integrability

Fuente: arXiv
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Auteurs principaux: Prevedelli, Marco, Perinelli, Alessio, Ricci, Leonardo
Format: Preprint
Publié: 2024
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author Prevedelli, Marco
Perinelli, Alessio
Ricci, Leonardo
author_facet Prevedelli, Marco
Perinelli, Alessio
Ricci, Leonardo
contents Kramers-Kronig relations link the real and imaginary part of the Fourier transform of a well-behaved causal transfer function describing a linear, time-invariant system. From the physical point of view, according to the Kramers-Kronig relations, absorption and dispersion become two sides of the same coin. Due to the simplicity of the assumptions underlying them, the relations are a cornerstone of physics. The rigorous mathematical proof was carried out by Titchmarsh in 1937 and just requires the transfer function to be square-integrable ($L^2$), or equivalently that the impulse response of the system at hand has a finite energy. Titchmarsh's proof is definitely not easy, thus leading to crucial steps that are often overlooked by instructors and, occasionally, prompting some authors to attempt shaky shortcuts. Here we share a rigorous mathematical proof that relies on the Laplace formalism and requires a slightly stronger assumption on the transfer function, namely its being Lebesgue-integrable ($L^1$). While the result is not as general as Titchmarsh's proof, its enhanced simplicity makes a deeper knowledge of the mathematical aspects of the Kramers-Kronig relations more accessible to the audience of physicists.
format Preprint
id arxiv_https___arxiv_org_abs_2407_21694
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Kramers-Kronig relations via Laplace formalism and $L^1$ integrability
Prevedelli, Marco
Perinelli, Alessio
Ricci, Leonardo
Mathematical Physics
Kramers-Kronig relations link the real and imaginary part of the Fourier transform of a well-behaved causal transfer function describing a linear, time-invariant system. From the physical point of view, according to the Kramers-Kronig relations, absorption and dispersion become two sides of the same coin. Due to the simplicity of the assumptions underlying them, the relations are a cornerstone of physics. The rigorous mathematical proof was carried out by Titchmarsh in 1937 and just requires the transfer function to be square-integrable ($L^2$), or equivalently that the impulse response of the system at hand has a finite energy. Titchmarsh's proof is definitely not easy, thus leading to crucial steps that are often overlooked by instructors and, occasionally, prompting some authors to attempt shaky shortcuts. Here we share a rigorous mathematical proof that relies on the Laplace formalism and requires a slightly stronger assumption on the transfer function, namely its being Lebesgue-integrable ($L^1$). While the result is not as general as Titchmarsh's proof, its enhanced simplicity makes a deeper knowledge of the mathematical aspects of the Kramers-Kronig relations more accessible to the audience of physicists.
title Kramers-Kronig relations via Laplace formalism and $L^1$ integrability
topic Mathematical Physics
url https://arxiv.org/abs/2407.21694