Comparison between Causal and Acausal Diffusion: a Schwinger-Keldysh Effective Field Theory Perspective

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Hauptverfasser: Abbasi, Navid, Kaminski, Matthias, Rischke, Dirk H.
Format: Preprint
Veröffentlicht: 2025
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author Abbasi, Navid
Kaminski, Matthias
Rischke, Dirk H.
author_facet Abbasi, Navid
Kaminski, Matthias
Rischke, Dirk H.
contents In Fick's time-honored theory of diffusion, the system responds instantaneously to external perturbations, resulting in acausal behavior. Maxwell-Cattaneo theory addresses this issue by introducing a relaxation time, rendering the diffusion process causal. We focus on systems where this relaxation time is comparable to the diffusion time and significantly larger than the relaxation times of all other non-conserved operators. In such systems, late-time diffusion is influenced by this relaxation process, leading to a theory of quasi-diffusion. Using the Schwinger-Keldysh Effective Field Theory (SK-EFT) framework, we compare the theories of diffusion and quasi-diffusion by analyzing the real-time dynamics of correlation functions both in linear response and at one-loop order. In particular, we show that the one-loop corrections in the causal (quasi-diffusion) theory, in both the underdamped and the overdamped cases, are governed by two universal functions. In the overdamped case, the behavior mirrors that of the acausal (diffusion) theory, which has recently been applied for precision tests of SK-EFT in diffusive systems. We suggest that our results in the underdamped limit can also be used for precision tests in quasi-diffusive systems.
format Preprint
id arxiv_https___arxiv_org_abs_2506_20500
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Comparison between Causal and Acausal Diffusion: a Schwinger-Keldysh Effective Field Theory Perspective
Abbasi, Navid
Kaminski, Matthias
Rischke, Dirk H.
High Energy Physics - Theory
Statistical Mechanics
Strongly Correlated Electrons
Nuclear Theory
In Fick's time-honored theory of diffusion, the system responds instantaneously to external perturbations, resulting in acausal behavior. Maxwell-Cattaneo theory addresses this issue by introducing a relaxation time, rendering the diffusion process causal. We focus on systems where this relaxation time is comparable to the diffusion time and significantly larger than the relaxation times of all other non-conserved operators. In such systems, late-time diffusion is influenced by this relaxation process, leading to a theory of quasi-diffusion. Using the Schwinger-Keldysh Effective Field Theory (SK-EFT) framework, we compare the theories of diffusion and quasi-diffusion by analyzing the real-time dynamics of correlation functions both in linear response and at one-loop order. In particular, we show that the one-loop corrections in the causal (quasi-diffusion) theory, in both the underdamped and the overdamped cases, are governed by two universal functions. In the overdamped case, the behavior mirrors that of the acausal (diffusion) theory, which has recently been applied for precision tests of SK-EFT in diffusive systems. We suggest that our results in the underdamped limit can also be used for precision tests in quasi-diffusive systems.
title Comparison between Causal and Acausal Diffusion: a Schwinger-Keldysh Effective Field Theory Perspective
topic High Energy Physics - Theory
Statistical Mechanics
Strongly Correlated Electrons
Nuclear Theory
url https://arxiv.org/abs/2506.20500