Observation of supersolid-like sound modes in a driven quantum gas

Fuente: arXiv
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Main Authors: Liebster, Nikolas, Sparn, Marius, Kath, Elinor, Duchene, Jelte, Strobel, Helmut, Oberthaler, Markus K.
Format: Preprint
Published: 2025
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_version_ 1866908474471874560
author Liebster, Nikolas
Sparn, Marius
Kath, Elinor
Duchene, Jelte
Strobel, Helmut
Oberthaler, Markus K.
author_facet Liebster, Nikolas
Sparn, Marius
Kath, Elinor
Duchene, Jelte
Strobel, Helmut
Oberthaler, Markus K.
contents Driven systems are of fundamental scientific interest, as they can exhibit properties that are radically different from the same system at equilibrium. In certain cases, long-lived states of driven matter can emerge, which exhibit new material properties. In this work, we probe the excitation spectrum of an emergent patterned state in a driven superfluid, finding that its response is identical to that of a one-dimensional supersolid. In order to extract physical quantities that parametrize the observed sound modes, we apply an effective hydrodynamic theory of superfluid smectics, which is agnostic to microscopic processes. We therefore use the conceptual framework of supersolids to characterize an otherwise dynamic and far-from-equilibrium state.
format Preprint
id arxiv_https___arxiv_org_abs_2503_10519
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Observation of supersolid-like sound modes in a driven quantum gas
Liebster, Nikolas
Sparn, Marius
Kath, Elinor
Duchene, Jelte
Strobel, Helmut
Oberthaler, Markus K.
Quantum Gases
Pattern Formation and Solitons
Driven systems are of fundamental scientific interest, as they can exhibit properties that are radically different from the same system at equilibrium. In certain cases, long-lived states of driven matter can emerge, which exhibit new material properties. In this work, we probe the excitation spectrum of an emergent patterned state in a driven superfluid, finding that its response is identical to that of a one-dimensional supersolid. In order to extract physical quantities that parametrize the observed sound modes, we apply an effective hydrodynamic theory of superfluid smectics, which is agnostic to microscopic processes. We therefore use the conceptual framework of supersolids to characterize an otherwise dynamic and far-from-equilibrium state.
title Observation of supersolid-like sound modes in a driven quantum gas
topic Quantum Gases
Pattern Formation and Solitons
url https://arxiv.org/abs/2503.10519