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<!DOCTYPE html>
<html lang="en" dir="ltr">
<head>
<title>Vincent Démery - Recherche</title>
<meta charset="UTF-8">
<link rel="stylesheet" href="styles/layout.css" type="text/css">
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</head>
<body>
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<div class="wrapper row1">
<header id="header" class="clear">
<div id="hgroup">
<h1>Recherche</h1>
</div>
<nav>
<ul>
<li><a href="index.html">Accueil</a></li>
<li><a href="recherche.html"><b>Recherche</b></a></li>
<li><a href="publications.html">Publications</a></li>
<li><a href="enseignement.html">Enseignement</a></li>
<li><a href="contact.html">Contact</a></li>
<div style="float: right"><li class="last"><a href="research.html">English</a></li></div>
</ul>
</nav>
</header>
</div>
<div class="wrapper row2">
<div id="container" class="clear">
<section class="clear">
<article class="four_quarters">
Cette page ne contient que des publications classées par thèmes ; une description des thèmes de recherche est disponible sur la page <a href="research.html">en anglais</a>.
</article>
</section>
<section class="clear">
<article class="four_quarters" id="#part_champ_stoch">
<div id="part_champ_stoch"><div/>
<h1>Particules et champs stochastiques</h1>
<h2>Particule brownienne en interaction avec un champ gaussien</h2>
<p align="center">
<img id="img" width=50% src="images/hyperbolic_trap_field_refrac_illustration.jpg">
</p>
<ul>
<li><b>Drag forces in classical fields</b>, V. Démery et D. S. Dean, <i>Phys. Rev. Lett.</i> 104, pp 080601 (2010).</li>
<li><b>Drag forces on inclusions in classical fields with dissipative dynamics</b>, V. Démery et D. S. Dean, <i>Eur. Phys. J. E</i> 32, pp 377–390 (2010).</li>
<li><b>Diffusion of active tracers in fluctuating fields</b>, D. S. Dean et V. Démery, <i>J. Phys. : Condens. Matter</i> 23 234114 (2011).</li>
<li><b>A perturbative path integral study of active and passive tracer diffusion in fluctuating fields</b>, V. Démery et D. S. Dean, <i>Phys. Rev. E</i> 84, 011148 (2011).</li>
<li><b>Thermal Casimir drag in fluctuating classical fields</b>, V. Démery et D. S. Dean, <i>Phys. Rev. E</i> 84, 010103(R) (2011).</li>
<li><b>Generalized Langevin equations for a driven tracer in dense soft colloids: construction and applications</b>, V. Démery, H. Jacquin et O. Bénichou, <i>New. J. Phys.</i> 16, 053032 (2014).</li>
<li><b>Mean-field microrheology of a very soft colloidal suspension: inertia induces shear-thickening</b>, V. Démery, <i>Phys. Rev. E</i> 91, 062301 (2015).</li>
<li><b>Driven probe under harmonic confinement in a colloidal bath</b>, V. Démery et É. Fodor, <i>J. Stat. Mech.</i> 2019, 033202 (2019).</li>
</ul>
<h2>Particules browniennes en interaction, corrélations</h2>
<p align="center">
<img id="img" width=50% src="images/tracers2d_cycles_force3_illustration_look.jpg">
</p>
<ul>
<li><b>The conductivity of strong electrolytes from stochastic density functional theory</b>, V. Démery et D. S. Dean, <i>J. Stat. Mech.</i> 023106 (2016).</li>
<li><b>Universal long ranged correlations in driven binary mixtures</b>, A. Poncet, O. Bénichou, V. Démery et G. Oshanin, <i>Phys. Rev. Lett.</i> 118, 118002 (2017).</li>
<li><b>Unbinding transition of probes in single-file systems</b>, O. Bénichou, V. Démery et A. Poncet, <i>Phys. Rev. Lett.</i> 120, 070601 (2018).</li>
<li><b>Stresses in non-equilibrium fluids: Exact formulation and coarse grained theory</b>, M. Krüger, A. Solon, V. Démery, C. M. Rohwer et D. S. Dean, <i>J. Chem. Phys.</i> 148, 084503 (2018).</li>
<li><b>N-tag probability law of the symmetric exclusion process</b>, A. Poncet, O. Bénichou, V. Démery et G. Oshanin, <i>Phys. Rev. E</i> 97, 062119 (2018).</li>
<li><b>Pair correlation of dilute active Brownian particles: From low-activity dipolar correction to high-activity algebraic depletion wings</b>, A. Poncet, O. Bénichou, V. Démery et D. Nishiguchi, <i>Phys. Rev. E</i> 103, 012605 (2021).</li>
</ul>
<h2>Particules auto-propulsées</h2>
<ul>
<li><b>Dynamics of a Self-Propelled Particle in a Harmonic Trap</b>, O. Dauchot et V. Démery, <i>Phys. Rev. Lett.</i> 122, 068002 (2019).</li>
<li><b>Selective and collective actuation in active solids</b>, P. Baconnier, D. Shohat, C. Hernandèz, C. Coulais, V. Démery, G. Düring et O. Dauchot, <i>Nat. Phys.</i> 1745-2481 (2022).</li>
<li><b>Noise-Induced Collective Actuation in Active Solids</b>, P. Baconnier, V. Démery et O. Dauchot, <i>Phys. Rev. E</i> 109, 024606 (2024).</li>
</ul>
</article>
</section>
<section class="clear">
<article class="four_quarters">
<div id="interfaces_elastiques"></div>
<h1>Interfaces élastiques désordonnées et application à la rupture</h1>
<h2>Rupture fragile, front de rupture</h2>
<p align="center">
<img id="img" width=40% src="images/brittle_solid5_illustration.jpg">
</p>
<ul>
<li><b>From microstructural features to effective toughness in disordered brittle solids</b>, V. Démery, A. Rosso et L. Ponson, <i>Europhys. Lett.</i> 105, 34003 (2014).</li>
<li><b> Effect of disorder geometry on the critical force in disordered elastic systems</b>, V. Démery, V. Lecomte et A. Rosso, <i>J. Stat. Mech.</i> 2014, P03009 (2014).</li>
<li><b>Pinning by rare defects and effective mobility for elastic interfaces in high dimensions</b>, X. Cao, V. Démery et A. Rosso, <i>J. Phys. A: Math. Theor.</i> 51 23LT01 (2018).</li>
</ul>
<h2>Rupture quasi-fragile, endommagement</h2>
<ul>
<li><b>Damage spreading in quasi-brittle disordered solids: I. Localization and failure</b>, E. Berthier, V. Démery et L. Ponson, <i>J. Mech. Phys. Solids</i> 102, 101-124 (2017).</li>
<li><b>Collective Damage Growth Controls Fault Orientation in Quasibrittle Compressive Failure</b>, V. Dansereau, V. Démery, E. Berthier, J. Weiss et L. Ponson, <i>Phys. Rev. Lett.</i> 122, 085501 (2019).</li>
</ul>
<h2>Dislocations</h2>
<ul>
<li><b>Does the Larkin length exist?</b>, D. Rodney, P.-A. Geslin, S. Patinet, V. Démery et A. Rosso, <i>Modelling Simul. Mater. Sci. Eng.</i> 32 035007 (2024).</li>
</ul>
</article>
</section>
<section class="clear">
<article class="four_quarters">
<h1>Feuilles minces</h1>
<div id="feuilles_minces"></div>
<h2>Feuilles minces aux interfaces liquides</h2>
<p align="center">
<img id="img" width=50% src="images/balloon.jpg">
</p>
<ul>
<li><b>Mechanics of large folds in thin interfacial films</b>, V. Démery, B. Davidovitch et C. Santangelo, <i>Phys. Rev. E</i> 90, 042401 (2014).</li>
<li><b>Optimal wrapping of liquid droplets with ultrathin sheets</b>, J. Paulsen, V. Démery, C. Santangelo, T. Russell, B. Davidovitch et N. Menon, <i>Nat. mat.</i> 14,1206-1209 (2015).</li>
<li><b>Geometry-driven folding of a floating annular sheet</b>, J. Paulsen, V. Démery, K. Buğra Toga, Z. Qiu, T. Russell, B. Davidovitch et N. Menon, <i>Phys. Rev. Lett.</i> 118, 048004 (2017).</li>
<li><b>Sculpting liquids with ultrathin shells</b>, Y. Timounay, A. R. Hartwell, M. He, D. E. King, L. K. Murphy, V. Démery et J. D. Paulsen, <i>Phys. Rev. Lett.</i> 127, 108002 (2021).</li>
</ul>
<h2>Morphologie d'un ruban tendu et tordu</h2>
<p align="center">
<img id="img" width=30% src="images/helicoid_cylinder_illustration.jpg">
</p>
<ul>
<li><b>Roadmap to the morphological instabilities of a stretched twisted ribbon</b>, J. Chopin, V. Démery et B. Davidovitch, <i>J. Elasticity</i> 119:137–189 (2015).</li>
<li><b>From cylindrical to stretching ridges and wrinkles in twisted ribbons</b>, H. Pham Dinh, V. Démery, B. Davidovitch, F. Brau et P. Damman, <i>Phys. Rev. Lett.</i> 117, 104301 (2016).</li>
<li><b>Cylinder morphology of a stretched and twisted ribbon</b>, V. Démery, H. Pham Dinh et P. Damman, <i>Phys. Rev. E</i> 98, 012801 (2018).</li>
</ul>
</article>
</section>
</div>
</div>
</body>
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