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Main Authors: Esen, Oğul, Gezici, Ayten, Grmela, Miroslav, Gümral, Hasan, Pavelka, Michal, Sütlü, Serkan
Format: Preprint
Published: 2023
Subjects:
Online Access:https://arxiv.org/abs/2307.06080
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author Esen, Oğul
Gezici, Ayten
Grmela, Miroslav
Gümral, Hasan
Pavelka, Michal
Sütlü, Serkan
author_facet Esen, Oğul
Gezici, Ayten
Grmela, Miroslav
Gümral, Hasan
Pavelka, Michal
Sütlü, Serkan
contents We propose a conformal generalization of the reversible Vlasov equation of kinetic plasma dynamics, called conformal kinetic theory. In order to arrive at this formalism, we start with the conformal Hamiltonian dynamics of particles and lift it to the dynamical formulation of the associated kinetic theory. The resulting theory represents a simple example of a geometric pathway from dissipative particle motion to dissipative kinetic motion. We also derive the kinetic equations of a continuum of particles governed by the contact Hamiltonian dynamics, which may be interpreted in the context of relativistic mechanics. Once again we start with the contact Hamiltonian dynamics and lift it to a kinetic theory, called contact kinetic dynamics. Finally, we project the contact kinetic theory to conformal kinetic theory so that they form a geometric hierarchy.
format Preprint
id arxiv_https___arxiv_org_abs_2307_06080
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Conformal and Contact Kinetic Dynamics and Their Geometrization
Esen, Oğul
Gezici, Ayten
Grmela, Miroslav
Gümral, Hasan
Pavelka, Michal
Sütlü, Serkan
Mathematical Physics
37K30, 70H05
We propose a conformal generalization of the reversible Vlasov equation of kinetic plasma dynamics, called conformal kinetic theory. In order to arrive at this formalism, we start with the conformal Hamiltonian dynamics of particles and lift it to the dynamical formulation of the associated kinetic theory. The resulting theory represents a simple example of a geometric pathway from dissipative particle motion to dissipative kinetic motion. We also derive the kinetic equations of a continuum of particles governed by the contact Hamiltonian dynamics, which may be interpreted in the context of relativistic mechanics. Once again we start with the contact Hamiltonian dynamics and lift it to a kinetic theory, called contact kinetic dynamics. Finally, we project the contact kinetic theory to conformal kinetic theory so that they form a geometric hierarchy.
title Conformal and Contact Kinetic Dynamics and Their Geometrization
topic Mathematical Physics
37K30, 70H05
url https://arxiv.org/abs/2307.06080