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Napat Poovuttikul

Researcher at University of Iceland

Publications -  21
Citations -  589

Napat Poovuttikul is an academic researcher from University of Iceland. The author has contributed to research in topics: Effective field theory & Symmetry (physics). The author has an hindex of 9, co-authored 19 publications receiving 466 citations. Previous affiliations of Napat Poovuttikul include Durham University & Leiden University.

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Generalized global symmetries in states with dynamical defects: The case of the transverse sound in field theory and holography

TL;DR: In this paper, the authors show how states with conserved numbers of dynamical defects (strings, domain walls, etc.) can be understood as possessing generalized global symmetries even when the microscopic origins of these symmetry properties are unknown, and build an effective theory of a $2+1$-dimensional fluid state with two perpendicular sets of immersed elastic line defects.
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Shear viscosity in holography and effective theory of transport without translational symmetry

TL;DR: In this article, the authors studied the viscosity of the shear tensor in the modified constitutive relation, constructed from thermodynamic quantities, fluid velocity, and the scalar fields.
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Pinning of longitudinal phonons in holographic spontaneous helices

TL;DR: In this article, the spontaneous breaking of translational symmetry and the associated Goldstone mode were investigated in a holographic model with Bianchi VII helical symmetry, and the authors observed the pinning of this mode after introducing a source for explicit breaking compatible with the helical symmetry of the setup.
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Holography and hydrodynamics with weakly broken symmetries

TL;DR: In this paper, the M\"uller-Israel-Stewart theory and magnetohydrodynamics coupled to dynamical electric fields were derived from a (microscopic) dual gravitational description.
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Generalised global symmetries in holography: magnetohydrodynamic waves in a strongly interacting plasma

TL;DR: In this article, a holographic dual to the effective theory of magnetohydrodynamics in strongly coupled plasmas was proposed, which is closely related to the large-Nc, $$ \mathcal{N} $$ = 4 supersymmetric Yang-Mills theory at (infinitely) strong coupling.