A holographic superfluid symphony

A bstract We study the hydrodynamic excitations of backreacted holographic superfluids by computing the full set of quasinormal modes (QNMs) at finite momentum and matching them to the existing hydrodynamic theory of superfluids. Additionally, we analyze the behavior of the low-energy excitations in...

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Vydané v:The journal of high energy physics Ročník 2021; číslo 11; s. 1 - 40
Hlavní autori: Areán, Daniel, Baggioli, Matteo, Grieninger, Sebastian, Landsteiner, Karl
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Berlin/Heidelberg Springer Berlin Heidelberg 26.11.2021
Springer Nature B.V
SpringerOpen
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ISSN:1029-8479, 1029-8479
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Shrnutí:A bstract We study the hydrodynamic excitations of backreacted holographic superfluids by computing the full set of quasinormal modes (QNMs) at finite momentum and matching them to the existing hydrodynamic theory of superfluids. Additionally, we analyze the behavior of the low-energy excitations in real frequency and complex momentum, going beyond the standard QNM picture. Finally, we carry out a novel type of study of the model by computing the support of the hydrodynamic modes across the phase diagram. We achieve this by determining the support of the corresponding QNMs on the different operators in the dual theory, both in complex frequency and complex momentum space. From the support, we are able to reconstruct the hydrodynamic dispersion relations using the hydrodynamic constitutive relations. Our analysis rules out a role-reversal phenomenon between first and second sound in this model, contrary to results obtained in a weakly coupled field theory framework.
Bibliografia:ObjectType-Article-1
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content type line 14
ISSN:1029-8479
1029-8479
DOI:10.1007/JHEP11(2021)206