Ci-dessous, les différences entre deux révisions de la page.
Les deux révisions précédentesRévision précédenteProchaine révision | Révision précédente | ||
science:publications:accueil [2023/07/06 14:25] – [2022] ccalugar | science:publications:accueil [2024/10/24 08:09] (Version actuelle) – [2024] ccalugar | ||
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**Les publications sont listées "en vrac". Retrouvez ci-dessous celles pour l' | **Les publications sont listées "en vrac". Retrouvez ci-dessous celles pour l' | ||
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+ | * ** Guillaume Le Breton, Oriane Bonhomme, Emmanuel Benichou, Claire Loison **, FROG: Exploiting all-atom molecular dynamics trajectories to calculate linear and non-linear optical responses of molecular liquids within Dalton’s QM/MM polarizable embedding scheme, **//J. Chem. Phys. 160, 194103//**, 2024 (https:// | ||
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+ | * ** D. Varma, C. Pacary, T. Dauxois, S. Joubaud **, Experimental study of superharmonic internal wave resonant triads in finite-depth nonuniform stratifications, | ||
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+ | * ** S Boury, P Maurer, S Joubaud, T Peacock, P Odier **, Triadic resonant instability in confined and unconfined axisymmetric geometries, **//Journal of Fluid Mechanics 957, A20 //**, 2024 | ||
===== 2023 ===== | ===== 2023 ===== | ||
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* ** Maxime M. C. Tortora and Daniel Jost **, Orientational Wetting and Topological Transitions in Confined Solutions of Semiflexible Polymers, **// | * ** Maxime M. C. Tortora and Daniel Jost **, Orientational Wetting and Topological Transitions in Confined Solutions of Semiflexible Polymers, **// | ||
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+ | * ** C. Pacary, T. Dauxois, E. Ermanyuk, P. Metz, M. Moulin, S. Joubaud **, Observation of inertia-gravity wave attractors in an axisymmetric enclosed basin, **// | ||
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+ | * ** Y. Onuki, S. Joubaud, T. Dauxois **, Breaking of Internal Waves Parametrically Excited by Ageostrophic Anticyclonic Instability, | ||
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+ | * ** Y. Onuki, S. Joubaud, T. Dauxois **, Breaking of Internal Waves Parametrically Excited by Ageostrophic Anticyclonic Instability, | ||
===== 2022 ===== | ===== 2022 ===== | ||
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* ** Hossein Salari, Marco Di Stefano, and Daniel Jost**, Spatial organization of chromosomes leads to heterogeneous chromatin motion and drives the liquid- or gel-like dynamical behavior of chromatin, **//Genome Res. 2022. 32: 28-43//**, (https:// | * ** Hossein Salari, Marco Di Stefano, and Daniel Jost**, Spatial organization of chromosomes leads to heterogeneous chromatin motion and drives the liquid- or gel-like dynamical behavior of chromatin, **//Genome Res. 2022. 32: 28-43//**, (https:// | ||
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+ | * ** Couston, L. A., Nandaha, J., & Favier, B. **. Competition between Rayleigh-Bénard and horizontal convection. **//Journal of Fluid Mechanics// | ||
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