On prethermal time crystals from semi-holography

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Hauptverfasser: Mitra, Toshali, Mondkar, Sukrut, Mukhopadhyay, Ayan, Soloviev, Alexander
Format: Preprint
Veröffentlicht: 2025
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author Mitra, Toshali
Mondkar, Sukrut
Mukhopadhyay, Ayan
Soloviev, Alexander
author_facet Mitra, Toshali
Mondkar, Sukrut
Mukhopadhyay, Ayan
Soloviev, Alexander
contents We demonstrate the existence of a pair of almost dissipationless oscillating modes at low temperatures in both the shear and sound channels of a hybrid quantum system, comprised of a weakly self-interacting perturbative sector coupled to strongly self-interacting holographic degrees of freedom described by a black hole geometry. We argue that these modes realize prethermal time-crystal behavior in semi-holographic systems without fine-tuning and can be observed by measuring operators that probe either the hard (perturbative) or the soft (holographic) sector. We also find novel {short wavelength} instabilities that lead to the formation of inhomogeneities even at higher temperatures. These results provide evidence that black holes with planar horizons and dynamical boundary conditions can develop both inhomogeneous and metastable time-crystal phases over a wide range of temperatures set by an intermediate scale given by the intersector coupling. Furthermore, they suggest that such phases can be realized without external driving in non-Abelian plasmas of asymptotically free gauge theories in the large-$N$ limit.
format Preprint
id arxiv_https___arxiv_org_abs_2512_21690
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle On prethermal time crystals from semi-holography
Mitra, Toshali
Mondkar, Sukrut
Mukhopadhyay, Ayan
Soloviev, Alexander
High Energy Physics - Theory
Statistical Mechanics
Quantum Physics
We demonstrate the existence of a pair of almost dissipationless oscillating modes at low temperatures in both the shear and sound channels of a hybrid quantum system, comprised of a weakly self-interacting perturbative sector coupled to strongly self-interacting holographic degrees of freedom described by a black hole geometry. We argue that these modes realize prethermal time-crystal behavior in semi-holographic systems without fine-tuning and can be observed by measuring operators that probe either the hard (perturbative) or the soft (holographic) sector. We also find novel {short wavelength} instabilities that lead to the formation of inhomogeneities even at higher temperatures. These results provide evidence that black holes with planar horizons and dynamical boundary conditions can develop both inhomogeneous and metastable time-crystal phases over a wide range of temperatures set by an intermediate scale given by the intersector coupling. Furthermore, they suggest that such phases can be realized without external driving in non-Abelian plasmas of asymptotically free gauge theories in the large-$N$ limit.
title On prethermal time crystals from semi-holography
topic High Energy Physics - Theory
Statistical Mechanics
Quantum Physics
url https://arxiv.org/abs/2512.21690