Dernières publications HAL



719 documents

  • F Delmotte, V Leroy, Jishen Zhang. Airborne Minnaert-Like Resonance of an Air-Filled Elasto-Bubble. 2026. ⟨hal-05591778⟩
  • Filip Novkoski, Loïc Fache, Félicien Bonnefoy, Guillaume Ducrozet, Jason Barckicke, et al.. Diffraction of deep-water solitons. 2026. ⟨hal-05561691⟩
  • Weiyuan Kong, Antonio Mosciatti, Jerome Boulanger, Guillaume Marrelec, Thierry Savy, et al.. Mechanical and Growth Anisotropy in Chara corallina : Challenging Green’s Hypothesis. 2026. ⟨hal-05544210⟩
  • Marlone Vernet, Eric Falcon. Collapse of statistical equilibrium in large-scale hydroelastic turbulent waves. Journal of Fluid Mechanics, 2026, 1029, pp.A23. ⟨10.1017/jfm.2026.11167⟩. ⟨hal-05460726⟩
  • Tanu Singla, Jean-Baptiste Gorce, Eric Falcon. Finite-system size effects in gravity-capillary wave turbulence. Physical Review Fluids, 2026, 11, pp.024801. ⟨10.1103/2w88-kh5j⟩. ⟨hal-05460747⟩
  • Nathan Shourick, Ibrahim Cheddadi, François Graner, Pierre Saramito. A new rheological framework for active polar fluids. 2026. ⟨hal-05395239v2⟩
  • Md Nasir Arafath, Norhane Salah, Braham Mezghrani, Rjeilya Ramy Abou, Izabellec Charlotte, et al.. DNase I-Conjugated Cerium Oxide Nanoparticle-Based Treatment to Improve Thrombolysis. ACS Applied Nano Materials, 2026. ⟨hal-05498323⟩
  • Maxime Renard, Pierre Saramito, Hélène Delanoë-Ayari, Ibrahim Cheddadi, Francois Graner. Viscoelastic fluid modeling for biological tissues under large deformations. Tec-21 Winter School 2026, Feb 2026, Saint-Martin d'Hères/Grenoble, France. 2026. ⟨hal-05568814⟩
  • Federico Ghimenti, Ludovic Berthier, Jorge Kurchan, Frédéric van Wijland. Clever algorithms for glasses work by time reparameterization. Proceedings of the National Academy of Sciences of the United States of America, 2026, 123 (4), pp.e2520818123. ⟨10.1073/pnas.2520818123⟩. ⟨hal-05600488⟩
  • Yvan Simon, Thierry Hocquet. On the relationship between ultrasonic attenuation and Brillouin linewidths: for a re-definition of the phonon lifetime. 2026. ⟨hal-05190403v2⟩