2021
DOI: 10.48550/arxiv.2103.03735
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Tails of Instability and Decay: a Hydrodynamic Perspective

Olalla A. Castro-Alvaredo,
Cecilia De Fazio,
Benjamin Doyon
et al.
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Cited by 3 publications
(14 citation statements)
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“…This question can be addressed numerically in a very effective manner by using for instance the iFluid package [40,41] which has demonstrated its efficacy in a number of examples, including the computation of correlation functions. Indeed, we have used this package to numerically solve our problem in [25] and will also employ it here for all our numerical results. Details on the modifications of the package that have been needed for this particular model, as well as numerical consistency checks can be found in Appendix A of [25].…”
Section: Dynamics: Thermodynamics and Hydrodynamicsmentioning
confidence: 99%
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“…This question can be addressed numerically in a very effective manner by using for instance the iFluid package [40,41] which has demonstrated its efficacy in a number of examples, including the computation of correlation functions. Indeed, we have used this package to numerically solve our problem in [25] and will also employ it here for all our numerical results. Details on the modifications of the package that have been needed for this particular model, as well as numerical consistency checks can be found in Appendix A of [25].…”
Section: Dynamics: Thermodynamics and Hydrodynamicsmentioning
confidence: 99%
“…This paper is part of an ongoing study [24,25] of the out-of-equilibrium dynamics of these theories and, in particular, of the precise signatures the presence of unstable particles leaves in dynamical quantities of physical interest. The main tool we employ in order to compute such quantities is the generalised hydrodynamic approach (GHD), a leading method in the study of the dynamics of many-body quantum systems, particularly integrable ones [26,27,28].…”
Section: Introductionmentioning
confidence: 99%
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The Staircase Model: Massless Flows and Hydrodynamics

Mazzoni,
Pomponio,
Castro-Alvaredo
et al. 2021
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