<div class="csl-bib-body">
<div class="csl-entry">Aimet, S., Tajik, M., Tournaire, G., Schüttelkopf, P. A., Sabino, J., Sotiriadis, S., Guarnieri, G., Schmiedmayer, J., & Eisert, J. (2025). Experimentally probing Landauer’s principle in the quantum many-body regime. <i>Nature Physics</i>, <i>21</i>(8), 1326–1331. https://doi.org/10.1038/s41567-025-02930-9</div>
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dc.identifier.issn
1745-2473
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/224150
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dc.description.abstract
Landauer’s principle bridges information theory and thermodynamics by linking the entropy change of a system during a process to the average energy dissipated to its environment. Although typically discussed in the context of erasing a single bit of information, Landauer’s principle can be generalized to characterize irreversibility in out-of-equilibrium processes, such as those involving complex quantum many-body systems. Specifically, the relation between the entropy change of a system and the energy dissipated to its environment can be decomposed into changes in quantum mutual information and a difference in the relative entropies of the environment. Here, we experimentally probe Landauer’s principle in the quantum many-body regime using a quantum field simulator of ultracold Bose gases. Employing a dynamical tomographic reconstruction scheme, we track the temporal evolution of the quantum field following a global mass quench from a massive to a massless Klein–Gordon model and analyse the thermodynamic and information-theoretic contributions to a generalized entropy production for various system–environment partitions of the composite system. Our results verify the quantum field theoretical calculations, interpreted using a semi-classical quasiparticle picture. Our work demonstrates the ability of ultracold atom-based quantum field simulators to experimentally investigate quantum thermodynamics.
en
dc.description.sponsorship
European Commission
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dc.language.iso
en
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dc.publisher
NATURE PORTFOLIO
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dc.relation.ispartof
Nature Physics
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dc.subject
quantum many-body systems
en
dc.subject
landauer erasure
en
dc.title
Experimentally probing Landauer’s principle in the quantum many-body regime