Kicked fluxonium with quantum strange attractor

Fuente: arXiv
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Autores principales: Chepelianskii, Alexei D., Shepelyansky, Dima L.
Formato: Preprint
Publicado: 2025
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author Chepelianskii, Alexei D.
Shepelyansky, Dima L.
author_facet Chepelianskii, Alexei D.
Shepelyansky, Dima L.
contents The quantum dissipative time evolution of a fluxonium under a pulsed field (kicks) is studied numerically and analytically. In the classical limit the system dynamics is converged to a strange chaotic attractor. The quantum properties of this system are studied for the density matrix in the frame of Lindblad equation. In the case of dissipative quantum evolution the steady-state density matrix is converged to a quantum strange attractor being similar to the classical one. It is shown that depending on the dissipation strength there is a regime when the eigenstates of density matrix are localized at a strong or moderate dissipation. At a weak dissipation the eigenstates are argued to be delocalized being linked to the Ehrenfest explosion of quantum wave packet. This phenomenon is related with the Lyapunov exponent and Ehrenfest time for the quantum strange attractor. Possible experimental realisations of this quantum strange attractor with fluxonium are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2512_18644
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Kicked fluxonium with quantum strange attractor
Chepelianskii, Alexei D.
Shepelyansky, Dima L.
Quantum Physics
Mesoscale and Nanoscale Physics
Chaotic Dynamics
The quantum dissipative time evolution of a fluxonium under a pulsed field (kicks) is studied numerically and analytically. In the classical limit the system dynamics is converged to a strange chaotic attractor. The quantum properties of this system are studied for the density matrix in the frame of Lindblad equation. In the case of dissipative quantum evolution the steady-state density matrix is converged to a quantum strange attractor being similar to the classical one. It is shown that depending on the dissipation strength there is a regime when the eigenstates of density matrix are localized at a strong or moderate dissipation. At a weak dissipation the eigenstates are argued to be delocalized being linked to the Ehrenfest explosion of quantum wave packet. This phenomenon is related with the Lyapunov exponent and Ehrenfest time for the quantum strange attractor. Possible experimental realisations of this quantum strange attractor with fluxonium are discussed.
title Kicked fluxonium with quantum strange attractor
topic Quantum Physics
Mesoscale and Nanoscale Physics
Chaotic Dynamics
url https://arxiv.org/abs/2512.18644