Jahr | 2025 |
Autor(en) | Yannick Deller, Martin Gärttner, Tobias Haas, Markus K. Oberthaler, Moritz Reh, Helmut Strobel |
Titel | Area laws and thermalization from classical entropies in a Bose-Einstein condensate |
KIP-Nummer | HD-KIP 25-46 |
KIP-Gruppe(n) | F17,F20 |
Dokumentart | Paper |
Quelle | Physical Review A, Vol. 112, L011303 (2025) |
doi | https://doi.org/10.1103/7jzy-g3vd |
Abstract (en) | The scaling of local quantum entropies is of utmost interest for characterizing quantum fields, many-body systems, and gravity. Despite their importance, theoretically and experimentally accessing quantum entropies is challenging as they are nonlinear functionals of the underlying quantum state. Here, we show that suitably chosen classical entropies capture many features of their quantum analogs for an experimentally relevant setting. We describe the post-quench dynamics of a multi-well spin-1 Bose-Einstein condensate from an initial product state via measurement distributions of spin observables and estimate the corresponding entropies using the asymptotically unbiased |
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