PMMH’s weekly seminar is held every Friday at 11 am (map)
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PMMH
BARRE CASSAN
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75005 PARIS
France
Tel : (33) 1 40 79 45 22
Séminaire PMMH - Maxime Hubert, FAU, Université d’Erlangen-Nürnberg, ALL
Mesoscale strategies of collective transport on deformable liquid interfaces
Transport at interfaces is crucial in multiple areas of physics and biology and is observed across a wide range of length scales. In the strategies used in such dynamics, the role of hydrodynamic interactions, interface deformations, and the presence of other agents at the interface provide the means to mediate interactions. These ingredients lead to rich behaviors, from segregations and enhanced diffusion to pattern formation. Given the experimental complexity of these systems, theoretical descriptions are a challenge that can be tackled by model systems.
In this presentation, by investigating the dynamics of two specific systems, namely sub-millimetric swimmers and memory-driven systems, we ask the question of which insights mesoscale transport strategies can provide to help understand active matter across scales. With swimmers, we will investigate the minimal requirement to allow for swimming at small length scales while accounting for the swimmer's inertia [1]. With memory-driven systems, we will investigate the markovian-like diffusive dynamics that appear when increasing the time correlations in the equations of motion, focusing on both the diffusing agent [2] and the statistical properties of the memory kernel [3]. We will conclude this talk by comparing our findings to experimental systems at different scales."
[1] Hubert et al, Phys. Rev. Lett. 126, 224501 (2021)
[2] Hubert et al, Phys. Rev. E 100, 032201 (2019)
[3] Hubert et al, arXiv:2106.13580v2
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Seminars (4)
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Séminaire PMMH - Francesca Borghi Università degli Studi di Milano
Vendredi 20 juin de 11h00 à 12h00 - Salle réunion PMMH 1
REPROGRAMMABLE HARDWARE FOR DATA PROCESSING AT THE EDGE : A NEW COMPUTING PARADIGM BASED ON NEUROMORPHIC SYSTEMS
The brain's ability to perform efficient and fault-tolerant data processing is strongly related with its peculiar interconnected adaptive architecture, based on redundant neural circuits interacting at different scales. By emulating the brain's processing and learning mechanisms, computing technologies strive to (…) -
Séminaire PMMH - Francesca Borghi Università degli Studi di Milano
Vendredi 20 juin de 11h00 à 12h00 - Salle réunion PMMH 1
REPROGRAMMABLE HARDWARE FOR DATA PROCESSING AT THE EDGE : A NEW COMPUTING PARADIGM BASED ON NEUROMORPHIC SYSTEMS
The brain's ability to perform efficient and fault-tolerant data processing is strongly related with its peculiar interconnected adaptive architecture, based on redundant neural circuits interacting at different scales. By emulating the brain's processing and learning mechanisms, computing technologies strive to (…) -
Séminaire PMMH - Salvatore Federico (University of Calgary, Canada)
Vendredi 4 juillet de 11h00 à 12h00 - Salle réunion PMMH 1
Continuum Mechanics of Hydrated Fibre-Reinforced Soft Tissues
Biological tissues can be represented as bi-phasic continua, with a porous solid phase saturated by an interstitial fluid and reinforced by collagen fibers. This lecture will give an overview of the modelling techniques for fibre-reinforced porous composite materials with statistical orientation of the fibers. Both (…) -
Séminaire PMMH - Salvatore Federico (University of Calgary, Canada)
Vendredi 4 juillet de 11h00 à 12h00 - Salle réunion PMMH 1
Continuum Mechanics of Hydrated Fibre-Reinforced Soft Tissues
Biological tissues can be represented as bi-phasic continua, with a porous solid phase saturated by an interstitial fluid and reinforced by collagen fibers. This lecture will give an overview of the modelling techniques for fibre-reinforced porous composite materials with statistical orientation of the fibers. Both (…)
The audience is composed of people with rather heterogeneous backgrounds including specialists in solids, fluids, granular flows, statistical physics... so the idea is to keep your talk understandable by people not necessarily working in your field... The seminar time slot runs from 11am to noon so the best is to make the talk last around 45 minutes to leave some time for discussion.
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