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Small amplitude forced fluid dynamics from gravity at T=0

Authors
Oh, Jae Hyuk
Issue Date
Dec-2011
Publisher
Springer Verlag
Citation
European Physical Journal C, v.71, no.12, pp.1841 - 1858
Indexed
SCIE
SCOPUS
Journal Title
European Physical Journal C
Volume
71
Number
12
Start Page
1841
End Page
1858
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/144808
DOI
10.1140/epjc/s10052-011-1841-9
ISSN
1434-6044
Abstract
The usual derivative expansion of gravity duals of charged fluid dynamics is known to break down in the zero temperature limit. In this case, fluid–gravity duality is not understood precisely. We explore this problem for a zero temperature charged fluid driven by a low frequency, small amplitude and spatially homogeneous external force. In the gravity dual, this corresponds to a time dependent boundary value of the dilaton. We calculate the bulk solution for the dilaton and the leading back reaction to the metric and the gauge fields using the modified low frequency expansion of Faulkner et al. (arXiv:0907.2694 [hep-th]). The resulting solutions are regular everywhere, establishing fluid–gravity duality to this order.
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