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      A note on the canonical approach to hydrodynamics and linear response theory

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          Abstract

          This note provides a comprehensive examination of the various approaches to formulating relativistic hydrodynamics, with a particular emphasis on the canonical approach. Relativistic hydrodynamics plays a crucial role in understanding the behavior of fluids in high-energy astrophysical phenomena and heavy-ion collisions. The canonical approach is explored in detail, highlighting its foundational principles, mathematical formulations, and practical implications in modeling relativistic fluid dynamics. Following this, we delve into the linear response theory, elucidating its relevance in the context of hydrodynamics. We analyze the response of relativistic fluids to external perturbations, discussing the theoretical framework and key results. This dual focus aims to bridge the gap between theoretical foundations and practical applications, offering a robust perspective on the dynamic interplay between relativistic hydrodynamics and linear response theory.

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          Journal
          20 August 2024
          Article
          2408.10698
          69ef9874-49ea-4750-8e99-91543bc38675

          http://creativecommons.org/licenses/by/4.0/

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          Custom metadata
          These notes are based on the introduction of arXiv:2403.14254
          hep-th cond-mat.str-el nucl-th

          Condensed matter,High energy & Particle physics,Nuclear physics
          Condensed matter, High energy & Particle physics, Nuclear physics

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