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A New Approach to First-Order Relativistic Hydrodynamics
<!--HTML-->In this talk we explain how the novel first-order approach proposed by Bemfica, Disconzi, Noronha [1], and Kovtun [2] naturally solved the long-standing problems of causality, stability, and well-posedness of relativistic Navier-Stokes theory. We discuss the differences between this...
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Lenguaje: | eng |
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2021
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Acceso en línea: | http://cds.cern.ch/record/2749280 |
_version_ | 1780969032104542208 |
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author | Noronha, Jorge |
author_facet | Noronha, Jorge |
author_sort | Noronha, Jorge |
collection | CERN |
description | <!--HTML-->In this talk we explain how the novel first-order approach proposed by Bemfica, Disconzi, Noronha [1], and Kovtun [2] naturally solved the long-standing problems of causality, stability, and well-posedness of relativistic Navier-Stokes theory. We discuss the differences between this new approach and Israel-Stewart theory, emphasizing how such distinctions could affect our current understanding of the hydrodynamic evolution of the quark-gluon plasma. We also explain how to derive this hydrodynamic approach from kinetic theory using a new coarse-graining method that is different from the well-known Chapman-Enskog expansion and the method of moments. Finally, we discuss how this new first-order theory emerges at strong coupling using holography.
[1] F. S. Bemfica, M. M. Disconzi, J. Noronha, Phys. Rev. D 98 (2018) 10, 104064; Phys. Rev. D 100 (2019) 10, 104020; and arxiv e-Print: 2009.11388.
[2] P. Kovtun, JHEP 10 (2019) 034; R. E. Hoult, P. Kovtun, JHEP 06 (2020) 067. |
id | cern-2749280 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
record_format | invenio |
spelling | cern-27492802022-11-02T22:26:21Zhttp://cds.cern.ch/record/2749280engNoronha, JorgeA New Approach to First-Order Relativistic HydrodynamicsInitial Stages 2021Conferences<!--HTML-->In this talk we explain how the novel first-order approach proposed by Bemfica, Disconzi, Noronha [1], and Kovtun [2] naturally solved the long-standing problems of causality, stability, and well-posedness of relativistic Navier-Stokes theory. We discuss the differences between this new approach and Israel-Stewart theory, emphasizing how such distinctions could affect our current understanding of the hydrodynamic evolution of the quark-gluon plasma. We also explain how to derive this hydrodynamic approach from kinetic theory using a new coarse-graining method that is different from the well-known Chapman-Enskog expansion and the method of moments. Finally, we discuss how this new first-order theory emerges at strong coupling using holography. [1] F. S. Bemfica, M. M. Disconzi, J. Noronha, Phys. Rev. D 98 (2018) 10, 104064; Phys. Rev. D 100 (2019) 10, 104020; and arxiv e-Print: 2009.11388. [2] P. Kovtun, JHEP 10 (2019) 034; R. E. Hoult, P. Kovtun, JHEP 06 (2020) 067.oai:cds.cern.ch:27492802021 |
spellingShingle | Conferences Noronha, Jorge A New Approach to First-Order Relativistic Hydrodynamics |
title | A New Approach to First-Order Relativistic Hydrodynamics |
title_full | A New Approach to First-Order Relativistic Hydrodynamics |
title_fullStr | A New Approach to First-Order Relativistic Hydrodynamics |
title_full_unstemmed | A New Approach to First-Order Relativistic Hydrodynamics |
title_short | A New Approach to First-Order Relativistic Hydrodynamics |
title_sort | new approach to first-order relativistic hydrodynamics |
topic | Conferences |
url | http://cds.cern.ch/record/2749280 |
work_keys_str_mv | AT noronhajorge anewapproachtofirstorderrelativistichydrodynamics AT noronhajorge initialstages2021 AT noronhajorge newapproachtofirstorderrelativistichydrodynamics |