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AbstractAbstract
[en] In this paper, we investigate the AC charge transport in the holographic Horndeski gravity and identify a metal-semiconductor like transition that is driven by the Horndeski coupling. Moreover, we fit our numeric data by the Drude formula in slow relaxation cases.
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Source
Available from: http://dx.doi.org/10.1140/epjc/s10052-019-7460-6; AID: 932
Record Type
Journal Article
Journal
European Physical Journal. C, Particles and Fields (Online); ISSN 1434-6052;
; v. 79(11); p. 1-8

Country of publication
ALTERNATING CURRENT, ANALYTICAL SOLUTION, CHARGE TRANSPORT, COUPLING, COUPLING CONSTANTS, DIRECT CURRENT, EINSTEIN-MAXWELL EQUATIONS, ELECTRIC CONDUCTIVITY, GENERAL RELATIVITY THEORY, GRAVITATION, KLEIN-GORDON EQUATION, LAGRANGE EQUATIONS, LAGRANGIAN FIELD THEORY, METALS, PHASE TRANSFORMATIONS, RELAXATION, SEMICONDUCTOR MATERIALS, TEMPERATURE DEPENDENCE, TEMPERATURE ZERO K
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