T. S. Chan, J. D. Mcgraw, T. Salez, R. Seemann, and M. Brinkmann, Journal of Fluid Mechanics, vol.828, p.271, 2017.

, PS/PMMA nanolayered films A. Bironeau, T. Salez, G. Miquelard-Garnier, and C. Sollogoub Macromolecules, vol.50, p.4064, 2017.

?. Van, E. Ledesma-alonso, T. Raphaël, P. Salez, D. Tordjeman et al., Waals interaction between a moving nano-cylinder and a liquid thin film R, Soft Matter, vol.13, p.3822, 2017.

H. Tanis, T. Meyer, E. Salez, A. C. Raphaël, J. Maggs et al., Molecular dynamics simulation of the capillary leveling of viscoelastic polymer films I, The Journal of Chemical Physics, vol.146, p.203327, 2017.

M. M. Couchman, C. Gerbelot, M. Benzaquen, P. D. Fowler, H. A. Stone et al., ? Capillary levelling of freestanding liquid nanofilms M. Ilton, vol.117, p.167801, 2016.

?. Wake, R. Wave-resistance-on-viscous-thin-films, M. Ledesma-alonso, T. Benzaquen, E. Salez et al., Journal of Fluid Mechanics, vol.792, p.829, 2016.

?. Slip, -. , J. D. Mcgraw, T. S. Chan, S. Maurer et al., Proceedings of the National Academy of Sciences of the USA, vol.113, p.1168, 2016.

M. Benzaquen, M. Ilton, M. V. Massa, T. Salez, P. Fowler et al., Veress Applied Physics Letters, vol.107, p.53103, 2015.

M. Benzaquen, O. Bäumchen, T. Salez, R. Peters, J. D. Mcgraw et al., ? Influence of slip on the Plateau-Rayleigh instability on a fibre S. Haefner, vol.6, p.7409, 2015.

P. Benzaquen, L. Fowler, T. Jubin, K. Salez, and E. Dalnoki-veress, Approach to universal self-similar attractor for the levelling of thin liquid films M, Raphaël Soft Matter, vol.10, p.8608, 2014.

, ? Viscoelastic effects and anomalous transient levelling exponents in thin films M. Benzaquen, T. Salez, and E. Raphaël Europhysics Letters, vol.106, p.36003, 2014.

M. Backholm, M. Benzaquen, T. Salez, E. Raphaël, and K. Dalnoki, , vol.10, p.2550, 2014.

M. Benzaquen, T. Salez, J. D. Mcgraw, M. Backholm, P. Fowler et al., ? Relaxation and intermediate asymptotics of a rectangular trench in a viscous film O. Bäumchen, vol.88, p.35001, 2013.

, ? Intermediate asymptotics of the capillary-driven thin film equation M. Benzaquen, T. Salez, and E, vol.36, p.82, 2013.

J. D. Mcgraw, T. Salez, O. Bäumchen, E. Raphaël, and K. Dalnoki, ? Capillary leveling of stepped films with inhomogeneous molecular mobility, vol.9, p.8297, 2013.

;. T. Capillary, J. D. Salez, O. Mcgraw, K. Bäumchen, E. Dalnoki-veress et al., Physics of Fluids, vol.24, p.102111, 2012.

J. D. Mcgraw, T. Salez, O. Bäumchen, E. Raphaël, and K. Dalnoki-veress, ? Self-similarity and energy dissipation in stepped polymer films, Physical Review Letters, vol.109, p.128303, 2012.

T. Salez, J. D. Mcgraw, S. L. Cormier, O. Bäumchen, K. Dalnoki-veress et al., ? Numerical solutions of thin film equations for polymer, vol.35, p.114, 2012.

?. Tanner's-law, ;. S. Cormier, J. D. Mcgraw, T. Salez, E. Raphaël et al., constriction : a quantitative analysis C. Trégouët, T. Salez, C. Monteux, and M. Reyssat Physical Review Fluids, vol.109, p.53603, 2012.

?. Elastohydrodynamic, M. Arutkin, R. Ledesma-alonso, T. Salez, and E. Raphaël, Journal of Fluid Mechanics, vol.829, p.538, 2017.

M. Rivetti, V. Bertin, T. Salez, C. Hui, C. Linne et al., ? Elastocapillary levelling of thin viscous films on soft substrates, vol.2, p.74102, 2017.

, ? Self-sustained lift and low friction via soft lubrication B. Saintyves, T. Jules, T. Salez, and L. Mahadevan Proceedings of the National Academy of Sciences of the USA, vol.113, p.5847, 2016.

S. Yashima, S. Hirayama, T. Kurokawa, T. Salez, H. Takefuji et al., Elastohydrodynamics of a sliding, spinning and sedimenting cylinder near a soft wall T. Salez and L, Mahadevan Journal of Fluid Mechanics, vol.779, p.1953, 2015.

P. Davis-purcell, T. Soulard, E. Salez, K. Raphaël, ;. C. Dalnoki-veress et al., ? Adhesion-induced fingering instabilities in thin elastic films under strain B, vol.15, p.6200, 2018.

C. Trégouët, A. Mikhailovskaya, T. Salez, N. Pantoustier, P. Perrin et al., ? Adsorption dynamics of hydrophobically modified polymers at an air-water interface, pp.41-101, 1956.

C. Trégouët, T. Salez, N. Pantoustier, P. Perrin, M. Reyssat et al., ? One-step fabrication of pH-responsive membranes and microcapsules through interfacial H-bond polymer complexation J. Dupré de Baubigny, vol.7, pp.141-244704, 2014.

, A.1.4 Cold atoms and molecules

A. K*-molecules, S. Ridinger, T. Chaudhuri, D. R. Salez, N. Fernandes et al., European Physical Journal D, vol.65, p.223, 2011.

P. De-gennes, Soft Interfaces: The 1994 Dirac Memorial Lecture, 1997.

P. Vettiger, G. Cross, M. Despont, U. Drechsler, U. Dürig et al., The millipede -nanotechnology entering data storage, IEEE Transactions on Nanotechnology, vol.1, issue.9, p.39, 2002.

H. Bodiguel and C. Fretigny, Reduced viscosity in thin polymer films, Physical Review Letters, vol.97, issue.9, p.18, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00157969

L. E. Stillwagon and R. G. Larson, Leveling of thin films over uneven substrates during spin coating, Physics of Fluids A: Fluid Dynamics, vol.2, issue.9, 1937.

A. Oron, S. H. Davis, and S. G. Bankoff, Long-scale evolution of thin liquid films, Rev. Mod. Phys, vol.69, issue.9, p.931, 1997.

A. Münch, B. Wagner, and T. P. Witelski, Lubrication models with small to large slip lengths, Jour. Eng. Math, vol.53, p.10, 2005.

R. V. Craster and O. K. Matar, Dynamics and stability of thin liquid films, Rev. Mod. Phys, vol.81, issue.9, p.1131, 2009.

K. Shin, S. Obukhov, J. Chen, J. Huh, Y. Hwang et al., Enhanced mobility of confined polymers, Nature Materials, vol.6, p.18, 2007.

A. Silberberg, Distribution of conformations and chain ends near the surface of a melt of linear flexible macromolecules, J. Colloid Int. Sci, vol.90, issue.9, p.86, 1982.

R. L. Jones, S. K. Kumar, D. L. Ho, R. M. Briber, and T. P. Russell, Chain conformation in ultrathin polymer films, Nature, vol.400, issue.9, p.146, 1999.

F. Brochard-wyart and P. De-gennes, Viscosity at small scales in polymer melts, European Physical Journal E, vol.1, issue.9, p.93, 2000.

L. Si, M. V. Massa, K. Dalnoki-veress, H. R. Brown, and R. A. Jones, Chain entanglement in thin freestanding polymer films, Physical Review Letters, vol.94, issue.9, p.127801, 2005.

O. Bäumchen, R. Fetzer, and K. Jacobs, Reduced interfacial entanglement density affects the boundary conditions of polymer flow, Physical Review Letters, vol.103, p.16, 2009.

G. Reiter and P. De-gennes, Spin-cast, thin, glassy polymer films: Highly metastable forms of matter, Eur. Phys. J. E, vol.6, issue.9, p.25, 2001.

D. R. Barbero and U. Steiner, Nonequilibrium polymer rheology in spin-cast films, Physical Review Letters, vol.102, issue.9, p.248303, 2009.

J. N. Israelachvili, Intermolecular and surface forces, 1992.

R. Seemann, S. Herminghaus, and K. Jacobs, Dewetting patterns and molecular forces: A reconciliation, Phys. Rev. Lett, vol.86, issue.10, p.5534, 2001.

L. H. Tanner, The spreading of silicone oil drops on horizontal surfaces, J. Phys. D, vol.12, p.28, 1979.

P. De-gennes, Wetting: statics and dynamics, Rev. Mod. Phys, vol.57, p.29, 1985.

P. De-gennes, F. Brochard-wyart, and D. Quéré, Capillarity and wetting phenomena: drops, bubbles, pearls, waves, vol.10, p.29, 2003.

D. Bonn, J. Eggers, J. Indekeu, J. Meunier, and E. Rolley, Wetting and spreading, Rev. Mod. Phys, vol.81, p.29, 2009.
URL : https://hal.archives-ouvertes.fr/hal-01769971

R. Mukherjee, A. Sharma, and U. Steiner, Surface Instability and Pattern Formation in thin Polymer Films, Generating Micro-and Nanopatterns on Polymeric Materials, 2011.

F. Closa, F. Ziebert, and E. Raphaël, Interplay of internal stresses, electric stresses, and surface diffusion in polymer films, Phys. Rev. E, vol.83, issue.10, p.51603, 2011.

G. Amarandei, P. Beltrame, I. Clancy, C. O'dwyer, A. Arshak et al., Pattern formation induced by an electric field in a polymer-air-polymer thin film system, Soft Matter, vol.8, issue.10, p.6333, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01314503

E. Lauga, M. P. Brenner, and H. A. Stone, Microfluidics: the no-slip boundary condition, in Handbook of Experimental Fluid Dynamics, vol.10, p.11, 2007.

P. De-gennes, C. R. Acad. Sc., Ser. B, vol.288, p.11, 1979.

M. Hénot, M. Grzelka, J. Zhang, S. Mariot, I. Antoniuk et al., Temperature-controlled slip of polymer melts on ideal substrates, Phys. Rev. Lett, vol.121, issue.10, p.177802, 2018.

J. Barrat and L. Bocquet, Large slip effect at a nonwetting fluid-solid interface, Phys. Rev. Lett, vol.82, issue.10, p.4671, 1999.

C. Cottin-bizonne, B. Cross, A. Steinberger, and E. Charlaix, Boundary slip on smooth hydrophobic surfaces: Intrinsic effects and possible artifacts, Phys. Rev. Lett, vol.94, issue.10, p.56102, 2005.

L. Léger, E. Raphaël, and H. Hervet, Surface-Anchored Polymer Chains: Their Role in Adhesion and Friction, page 185, p.11, 1999.

J. Plateau, Experimental and theoretical steady state of liquids subjected to nothing but molecular forces

H. Perrin, R. Lhermerout, K. Davitt, E. Rolley, and B. Andreotti, Defects at the nanoscale impact contact line motion at all scales, Phys. Rev. Lett, vol.116, p.29, 2016.

C. Huh and L. E. Scriven, Hydrodynamic model of steady movement of a solid/liquid/fluid contact line, Journal of Colloid and Interface Science, vol.35, issue.13, p.85, 1971.

S. Marbach, D. S. Dean, and L. Bocquet, Transport and dispersion across wiggling nanopores, Nature Physics, vol.14, p.45, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01990486

G. Grün, K. Mecke, and M. Rauscher, Thin-film flow influenced by thermal noise, Journal of Statistical Physics, vol.122, p.18, 2006.

J. Petit, D. Rivière, H. Kellay, and J. Delville, Break-up dynamics of fluctuating liquid threads, Proceedings of the National Academy of Sciences, vol.109, p.19, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00751483

L. Berthier and M. D. Ediger, Facets of glass physics, Physics Today, vol.69, p.21, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01940821

J. H. Gibbs and E. A. Dimarzio, Nature of the glass transition and the glassy state, The Journal of Chemical Physics, vol.28, p.21, 1958.

R. Mari, F. Krzakala, and J. Kurchan, Jamming versus glass transitions, Physical Review Letters, vol.103, p.21, 2009.

H. Lee, K. Paeng, S. F. Swallen, and M. D. Ediger, Direct measurement of molecular mobility in actively deformed polymer glasses, Science, vol.323, p.21, 2009.

F. Krzakala and L. Zdeborova, Glassy dynamics as a melting process, The Journal of Chemical Physics, vol.134, p.34513, 1921.

E. P. Bernard and W. Krauth, Two-step melting in two dimensions: first-order liquid-hexatic transition, Phys. Rev. Lett, vol.107, p.21, 2011.

M. Ediger and P. Harrowell, Perspective: Supercooled liquids and glasses, The Journal of Chemical Physics, vol.137, p.21, 2012.

G. Biroli and J. Bouchaud, Clearing up the mysteries of glassy dynamics, Physics, vol.6, issue.21, p.128, 2013.

S. Singh, M. D. Ediger, and J. J. De-pablo, Ultrastable glasses from in silico vapour deposition, Nature Materials, vol.12, issue.21, p.139, 2013.

M. Röttger, T. Domenech, R. Van-der-weegen, A. Breuillac, R. Nicolaÿ et al., High-performance vitrimers from commodity thermoplastics through dioxaborolane metathesis, Science, vol.356, p.21, 2017.

P. W. Anderson, Through the glass lightly, Science, vol.267, p.1615, 1921.

L. Berthier, G. Biroli, J. Bouchaud, L. Cipeletti, and W. Van-saarloos, Dynamical heterogeneities in glasses, colloids, and granular media, p.21, 2010.

A. J. Liu and S. R. Nagel, The jamming transition and the marginally jammed solid, Annu. Rev. Cond. Mat. Phys, vol.1, p.21, 2010.

G. Parisi and F. Zamponi, Mean-field theory of hard sphere glasses and jamming, Rev. Mod. Phys, vol.82, p.21, 2010.

L. Berthier and G. Biroli, Theoretical perspective on the glass transition and amorphous materials, Rev. Mod. Phys, vol.83, p.21, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00608672

M. H. Cohen and G. S. Grest, Liquid-glass transition, a free-volume approach, Phys. Rev. B, vol.20, p.21, 1979.

A. K. Doolittle, Studies in Newtonian flow. ii. the dependence of the viscosity of liquids on free-space, Journal of Applied Physics, vol.22, p.21, 1951.

H. Vogel, The law of the relationship between viscosity of liquids and the temperature, Physikalische Zeitschrift, vol.22, p.21, 1921.

G. S. Fulcher, Analysis of recent measurements of the viscosity of glasses, Journal of the American Ceramic Society, vol.8, p.21, 1925.

G. Tammann and W. Hesse, Die abhängigkeit der viscosität von der temperatur bie unterkühlten flüssigkeiten. Zeitschrift für Anorganische und Allgemeine Chemie, vol.156, p.21, 1926.

G. Adam and J. H. Gibbs, On the temperature dependence of cooperative relaxation properties in glass-forming liquids, The Journal of Chemical Physics, vol.43, p.21, 1965.

C. Donati, J. F. Douglas, W. Kob, S. J. Plimpton, P. H. Poole et al., Stringlike cooperative motion in a supercooled liquid, Physical Review Letters, vol.80, p.26, 1998.

J. D. Stevenson, J. Schmalian, and P. G. Wolynes, The shapes of cooperatively rearranging regions in glass-forming liquids, Nature Physics, vol.2, issue.268, p.26, 2006.

E. Donth, Characteristic length of the glass-transition, Journal of Polymer Science: Part B: Polymer Physics, vol.34, p.21, 1996.

C. L. Jackson and G. B. Mckenna, The melting behavior of organic materials confined in porous solids, The Journal of Chemical Physics, vol.93, p.21, 1990.
URL : https://hal.archives-ouvertes.fr/hal-02557807

J. L. Keddie, R. A. Jones, and R. A. Cory, Size-dependent depression of the glass transition temperature in polymer films, Europhysics Letters, vol.27, p.21, 1994.

J. A. Forrest, K. Dalnoki-veress, J. R. Stevens, and J. R. Dutcher, Effect of free surfaces on the glass transition temperature of thin polymer films, Physical Review Letters, vol.77, 1921.

C. J. Ellison and J. M. Torkelson, The distribution of glass-transition temperatures in nanoscopically confined glass formers, Nature Materials, vol.2, p.695, 2003.

G. B. Mckenna, Status of our understanding of dynamics in confinement: Perspectives from confit, The European Physical Journal E: Soft Matter and Biological Physics, vol.12, p.191, 2003.

M. Alcoutlabi and G. B. Mckenna, Effects of confinement on material behaviour at the nanometre size scale, J. Phys.: Condens. Matter, vol.17, p.21, 2005.

C. R. Roth and J. R. Dutcher, Glass transition and chain mobility in thin polymer films, Journal of Electroanalytical Chemistry, vol.584, issue.13, p.26, 1921.

A. Raegen, M. Chowdhury, C. Calers, A. Schmatulla, U. Steiner et al., Aging of thin polymer films cast from a near theta solvent, Phys. Rev. Lett, vol.105, p.21, 2010.

M. D. Ediger and J. A. Forrest, Dynamics near free surfaces and the glass transition in thin polymer films: A view to the future, Macromolecules, vol.47, p.23, 2014.

F. Varnik, J. Baschnagel, and K. Binder, Reduction of the glass transition temperature in polymer films: A molecular-dynamics study, Phys. Rev. E, vol.65, p.22, 2002.

Z. Fakhraai and J. A. Forrest, Measuring the surface dynamics of glassy polymers, Science, vol.319, p.600, 1921.

M. Ilton, D. Qi, and J. A. Forrest, Using nanoparticle embedding to probe surface rheology and the length scale of surface mobility in glassy polymers, Macromolecules, vol.42, p.21, 2009.

Z. Yang, Y. Fujii, F. K. Lee, C. Lam, and O. K. Tsui, Glass transition dynamics and surface layer mobility in unentangled polystyrene films, Science, vol.328, p.21, 2010.

H. Yoon and G. B. Mckenna, Substrate effects on glass transition and free surface viscoelasticity of ultrathin polystyrene films, Macromolecules, p.21, 2014.

W. Zhang and L. Yu, Surface diffusion of polymer glasses, Macromolecules, vol.49, p.28, 2016.

K. L. Ngai, A. K. Rizos, and D. J. Plazek, Reduction of the glass temperature of thin freely standing polymer films caused by the decrease of the coupling parameter in the coupling model, Journal of Non-Crystalline Solids, vol.235, p.22, 1998.

P. Scheidler, W. Kob, and K. Binder, The relaxation dynamics of a simple glass former confined in a pore, Europhysics Letters, vol.52, p.22, 2000.

D. Long and F. Lequeux, Heterogeneous dynamics at the glass transition in van der waals liquids, in the bulk and in thin films, European Physical Journal E, vol.4, p.22, 2001.

S. Herminghaus, K. Jacobs, and R. Seemann, The glass transition of thin polymer films: some questions, and a possible answer, European Physical Journal E, vol.5, p.22, 2001.

J. Baschnagel and F. Varnik, Computer simulations of supercooled polymer melts in the bulk and in confined geometry, Journal of Physics: Condensed Matter, vol.17, p.22, 2005.

S. Peter, H. Meyer, and J. Baschnagel, Thickness-dependent reduction of the glass-transition temperature in thin polymer films with a free surface, Journal of Polymer Science Part B: Polymer Physics, vol.44, p.22, 2006.

J. E. Lipson and S. T. Milner, Percolation model of interfacial effects in polymeric glasses, European Physical Journal B, vol.72, p.22, 2009.

J. A. Forrest, What can we learn about a dynamical length scale in glasses from measurements of surface mobility?, The Journal of Chemical Physics, vol.139, p.22, 2013.

C. Lam and O. K. Tsui, Crossover to surface flow in supercooled unentangled polymer films, Phys. Rev. E, vol.88, p.22, 2013.

J. A. Forrest and K. Dalnoki-veress, When does a glass transition temperature not signify a glass transition, vol.3, p.22, 2014.

S. Mirigian and K. S. Schweizer, Communication: Slow relaxation, spatial mobility gradients, and vitrification in confined films, The Journal of Chemical Physics, vol.141, p.22, 2014.

M. Tress, E. U. Mapesa, W. Kossack, W. K. Kipnusu, M. Reiche et al., Glassy dynamics in condensed isolated polymer chains. Science, vol.341, p.1371, 2013.

K. Dalnoki-veress, J. A. Forrest, P. G. De-gennes, and J. R. Dutcher, Glass transition reductions in thin freely-standing polymer films : A scaling analysis of chain confinement effects, J. Phys. IV France, vol.10, p.28, 2000.

O. Bäumchen, J. D. Mcgraw, J. A. Forrest, and K. Dalnoki-veress, Reduced glass transition temperatures in thin polymer films: Surface effect or artifact?, Physical Review Letters, vol.109, p.55701, 1922.

P. De-gennes, Glass transitions in thin polymer films, The European Physical Journal E, vol.2, p.28, 2000.

S. T. Milner and J. E. Lipson, Delayed glassification model for free-surface suppression of tg in polymer glasses, Macromolecules, vol.9865, p.28, 2010.

T. Sasaki, A. Shimizu, T. H. Mourey, C. T. Thurau, and M. D. Ediger, Glass transition of small polystyrene spheres in aqueous suspensions, The Journal of Chemical Physics, vol.119, p.22, 2003.

Y. Rharbi, Reduction of the glass transition temperature of confined polystyrene nanoparticles in nanoblends, Phys. Rev. E, vol.77, p.23, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00352933

Y. Guo, C. Zhang, C. Lai, R. D. Priestley, M. D'acunzi et al., Structural relaxation of polymer nanospheres under soft and hard confinement: Isobaric versus isochoric conditions, ACS Nano, vol.5, p.22, 2011.

C. Zhang, Y. Guo, and R. D. Priestley, Glass transition temperature of polymer nanoparticles under soft and hard confinement, Macromolecules, vol.44, p.22, 2011.

C. Zhang, Y. Guo, K. B. Shepard, and R. D. Priestley, Fragility of an isochorically confined polymer glass, The Journal of Physical Chemistry Letters, vol.4, p.23, 2013.

C. Zhang, V. M. Boucher, D. Cangialosi, and R. D. Priestley, Mobility and glass transition temperature of polymer nanospheres, Polymer, vol.54, p.22, 2013.

S. Feng, Z. Y. Li, R. Liu, B. Y. Mai, Q. Wu et al., Glass transition of polystyrene nanospheres under different confined environments in aqueous dispersions, Soft Matter, vol.9, p.23, 2013.

S. Feng, Y. Chen, B. Mai, W. Wei, C. Zheng et al., Glass transition of poly(methyl methacrylate) nanospheres in aqueous dispersion, Phys. Chem. Chem. Phys, vol.16, p.22, 2014.

B. Zhang and X. Cheng, Structures and dynamics of glass-forming colloidal liquids under spherical confinement, Phys. Rev. Lett, vol.116, p.22, 2016.

L. Chen and J. M. Torkelson, Tuning the tg confinement effect in thin polymer films via minute levels of residual surfactant which cap the free surface, Polymer, vol.86, issue.23, p.226, 2016.

R. R. Baglay and C. B. Roth, Communication: Experimentally determined profile of local glass transition temperature across a glassy-rubbery polymer interface with a tg difference of 80 k, The Journal of Chemical Physics, vol.143, p.28, 2015.

A. N. Raegen, M. V. Massa, J. A. Forrest, and K. Dalnoki-veress, Effect of atmosphere on reductions in the glass transition of thin polystyrene films, European Physical Journal E, vol.27, p.26, 2008.

B. A. Betancourt, J. F. Douglas, and F. W. Starr, String model for the dynamics of glass-forming liquids, The Journal of Chemical Physics, vol.140, p.26, 2014.

W. W. Mullins, Theory of thermal grooving, J. Appl. Phys, vol.28, p.28, 1957.

W. W. Mullins, Flattening of a nearly plan solid surface due to capillarity, J. Appl. Phys, vol.30, p.28, 1958.

C. A. Angell, Formation of glasses from liquids and biopolymers, Science, vol.267, p.28, 1924.

Y. Amarouchene, M. Mangeat, B. Vidal-montes, L. Ondic, T. Guérin et al., Nonequilibrium dynamics induced by scattering forces for optically trapped nanoparticles in strongly inertial regimes, Phys. Rev. Lett, vol.122, p.183901, 1928.
URL : https://hal.archives-ouvertes.fr/hal-02125301

A. W. Lau, M. Portigliatti, E. Raphaël, and L. Léger, Spreading of latex particles on a substrate, Europhys. Lett, vol.60, p.32, 2002.

S. Mora, T. Phou, J. Fromental, L. M. Pismen, and Y. Pomeau, Capillarity driven instability of a soft solid, Phys. Rev. Lett, vol.105, p.29, 2010.

J. Y. Carrillo, E. Raphaël, and A. V. Dobrynin, Adhesion of nanoparticles, Langmuir, vol.26, p.32, 2010.

S. Mora, M. Abkarian, H. Tabuteau, and Y. Pomeau, Surface instability of soft solids under strain, Soft Matter, vol.7, p.29, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00655908

R. W. Style, C. Hyland, R. Boltyanskiy, J. Wettlaufer, and E. R. Dufresne, Surface tension and contact with soft elastic solids, Nature Communications, vol.4, p.33, 2013.

S. Mora, C. Maurini, T. Phou, J. Fromental, B. Audoly et al., Solid drops: Large capillary deformations of immersed elastic rods, Phys. Rev. Lett, vol.111, p.30, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00842852

K. L. Johnson, Contact mechanics, p.29, 1985.

D. Maugis, Contact, adhesion and rupture of elastic solids, Hertz. On the contact of elastic solids. Miscellaneous Papers, vol.29, 2000.

K. L. Johnson, K. Kendall, and A. D. Roberts, Surface energy and the contact of elastic solids, Proc. R. Soc. Lond. A, vol.324, p.33, 1971.

B. V. Derjaguin, V. M. Muller, and Y. P. Toporov, Effect of contact deformations on the adhesion of particles, J. Colloid Interface Sci, vol.53, p.29, 1975.

F. Basoli, S. M. Giannitelli, M. Gori, P. Mozetic, A. Bonfanti et al., Biomechanical characterization at the cell scale: Present and prospects, Frontiers in Physiology, vol.9, p.40, 2018.

T. Young, An essay on the cohesion of fluids, Phil. R. Soc. London, vol.95, p.34, 1805.

R. Shuttleworth, The surface tension of solids, Proc. Phys. Soc. London Sec. A, vol.63, p.31, 1950.

P. Müller and A. Saul, Elastic effects on surface physics, Surf. Sci. Rep, vol.54, p.32, 2004.

A. Marchand, S. Das, J. H. Snoeijer, and B. Andreotti, Capillary pressure and contact line force on a soft solid, Phys. Rev. Lett, vol.108, p.35, 1932.

B. Andreotti and J. H. Snoeijer, Soft wetting and the shuttleworth effect, at the crossroads between thermodynamics and mechanics, Europhysics Letters, vol.113, p.35, 2016.

Q. Xu, K. E. Jensen, R. Boltyanskiy, R. Sarfati, R. W. Style et al., Direct measurement of strain-dependent solid surface stress, Nature Communications, vol.8, issue.555, p.37

K. E. Jensen, R. Sarfati, R. W. Style, R. Boltyanskiy, A. Chakrabarti et al., Wetting and phase separation in soft adhesion, Proceedings of the National Academy of Sciences, vol.112, p.32, 2015.

A. Hourlier-fargette, A. Antkowiak, A. Chateauminois, and S. Neukirch, Role of uncrosslinked chains in droplets dynamics on silicone elastomers, Soft Matter, vol.13, p.32, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01525392

J. Joanny, A. Johner, and T. A. Vilgis, Gels at interfaces, Eur. Phys. J. E, vol.209, p.33, 2001.

H. Liang, Z. Cao, Z. Wang, and A. V. Dobrynin, Surface stress and surface tension in polymeric networks, ACS Macro Letters, vol.7, p.35, 2018.

J. H. Snoeijer, E. Rolley, and B. Andreotti, Paradox of contact angle selection on stretched soft solids, Phys. Rev. Lett, vol.121, p.35, 2018.

A. Pandey, B. Andreotti, S. Karpitschka, G. J. Van-zwieten, E. H. Van-brummelen et al., On the singular nature of the elastocapillary ridge, p.35, 2020.

R. Masurel, M. Roché, L. Limat, I. Ionescu, and J. Dervaux, Elastocapillary ridge as a noninteger disclination, Phys. Rev. Lett, vol.122, p.35, 2019.
URL : https://hal.archives-ouvertes.fr/hal-01818872

A. Maali, R. Boisgard, H. Chraibi, Z. Zhang, H. Kellay et al., Viscoelastic drag forces and crossover from no-slip to slip boundary conditions for flow near air-water interfaces, Phys. Rev. Lett, vol.118, p.37, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01481369

S. Leroy, A. Steinberger, C. Cottin-bizonne, F. Restagno, L. Léger et al., Hydrodynamic interaction between a spherical particle and an elastic surface: A gentle probe for soft thin films, Phys. Rev. Lett, vol.108, p.40, 2012.

B. J. Hamrock, Fundamentals of fluid film lubrication, p.39, 1994.

C. S. Campbell, Self-lubrication for long runout landslides, J. Geol, vol.97, p.39, 1989.

F. Brochard-wyart, Hydrodynamics at soft surfaces : from rubber tyres to living cells, Comptes rendus Physique, vol.4, p.39, 2003.

V. C. Mow, M. H. Holmes, and W. M. Lai, Fluid transport and mechanical properties of articular cartilage: A review, J. Biomech, vol.17, p.40, 1984.

S. Jahn and J. Klein, Lubrication of articular cartilage, Physics Today, vol.71, p.44, 2018.

H. L. Goldsmith, Red cell motions and wall interactions in tube flow, Fed. Proc, vol.30, p.40, 1971.

S. Leroy and E. Charlaix, Hydrodynamic interactions for the measurement of thin film elastic properties, Journal of Fluid Mechanics, vol.674, p.40, 2011.

R. Villey, E. Martinot, C. Cottin-bizonne, M. Phaner-goutorbe, L. Leger et al., Effect of surface elasticity on the rheology of nanometric liquids, Phys. Rev. Lett, vol.111, p.40, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00967566

Y. Wang, C. Dhong, and J. Frechette, Out-of-contact elastohydrodynamic deformation due to lubrication forces, Phys. Rev. Lett, vol.115, p.40, 2015.

D. Y. Chan, E. Klaseboer, and R. Manica, Dynamic deformations and forces in soft matter, Soft Matter, vol.5, p.40, 2009.

I. U. Vakarelski, R. Manica, X. Tang, S. J. Shea, G. W. Stevens et al., Dynamic interactions between microbubbles in water, Proceedings of the National Academy of Sciences, vol.107, p.40, 2010.

D. Guan, E. Charlaix, R. Z. Qi, and P. Tong, Noncontact viscoelastic imaging of living cells using a long-needle atomic force microscope with dual-frequency modulation, Phys. Rev. App, vol.8, p.40, 2017.

Y. Wang, B. Zeng, H. T. Alem, Z. Zhang, E. Charlaix et al., Viscocapillary response of gas bubbles probed by thermal noise atomic force measurement, Langmuir, vol.34, p.1371, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01696874

K. Sekimoto and L. Leibler, A mechanism for shear thickening of polymer-bearing surfaces: elasto-hydrodynamic coupling, Europhys. Lett, vol.23, p.40, 1993.

M. Abkarian, C. Lartigue, and A. Viallat, Tank treading and unbinding of deformable vesicles in shear flow: Determination of the lift force, Phys. Rev. Lett, vol.88, p.40, 2002.

J. Beaucourt, T. Biben, and C. Misbah, Optimal lift force on vesicles near a compressible substrate, Europhysics Letters, vol.67, p.40, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00003435

J. M. Skotheim and L. Mahadevan, Soft lubrication, Phys. Rev. Lett, vol.92, p.41, 2004.

J. M. Skotheim and L. Mahadevan, Soft lubrication: The elastohydrodynamics of nonconforming and conforming contacts, Physics of Fluids, vol.17, p.43, 2005.

J. Urzay, S. G. , L. Smith, and B. J. Glover, The elastohydrodynamic force on a sphere near a soft wall, Physics of Fluids, vol.19, p.40, 2007.

J. Urzay, Asymptotic theory of the elastohydrodynamic adhesion and gliding motion of a solid particle over soft and sticky substrates at low reynolds numbers, Journal of Fluid Mechanics, vol.653, p.40, 2010.

J. H. Snoeijer, J. Eggers, and C. H. Venner, Similarity theory of lubricated hertzian contacts, Physics of Fluids, vol.25, p.40, 2013.

A. Daddi-moussa-ider, M. Lisicki, and S. Gekle, Mobility of an axisymmetric particle near an elastic interface, Journal of Fluid Mechanics, vol.811, p.40, 2017.

A. Daddi-moussa-ider, B. Rallabandi, S. Gekle, and H. A. Stone, Reciprocal theorem for the prediction of the normal force induced on a particle translating parallel to an elastic membrane, Phys. Rev. Fluids, vol.3, p.40, 2018.

Y. Wang, G. A. Pilkington, C. Dhong, and J. Frechette, Elastic deformation during dynamic force measurements in viscous fluids, Current Opinion in Colloid and Interface Science, vol.27, p.40, 2017.

K. P. Chakraborty and S. Chakraborty, Small-scale flow with deformable boundaries, J. Indian Inst. Sci, vol.98, p.40, 2018.

A. Bouchet, C. Cazeneuve, N. Baghdadli, G. S. Luengo, and C. Drummond, Experimental study and modeling of boundary lubricant polyelectrolyte films, Macromolecules, vol.48, p.40, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01145822

H. S. Davies, D. Débarre, N. E. Amri, C. Verdier, R. P. Richter et al., Elastohydrodynamic lift at a soft wall, Phys. Rev. Lett, vol.120, p.41, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01652253

B. Rallabandi, N. Oppenheimer, M. Y. Ben-zion, and H. A. Stone, Membraneinduced hydroelastic migration of a particle surfing its own wave, Nature Physics, vol.14, p.42, 2018.

P. Vialar, P. Merzeau, S. Giasson, and C. Drummond, Compliant surfaces under shear: Elastohydrodynamic lift force, Langmuir, vol.35, p.15605, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02383852

R. W. Style, Y. Che, S. J. Park, B. M. Weon, J. H. Je et al., Patterning droplets with durotaxis, Proceedings of the National Academy of Sciences, vol.110, p.44, 2013.

N. Moyle, H. Wu, C. Khripin, F. Bremond, C. Hui et al., Enhancement of elastohydrodynamic friction by elastic hysteresis in a periodic structure, Soft Matter, vol.16, p.44, 2020.

L. Canale, J. Comtet, A. Niguès, C. Cohen, C. Clanet et al., Nanorheology of interfacial water during ice gliding, Phys. Rev. X, vol.9, p.44, 2019.

S. Karpitschka, A. Pandey, L. A. Lubbers, J. H. Weijs, L. Botto et al., Liquid drops attract or repel by the inverted cheerios effect, Proceedings of the National Academy of Sciences, vol.113, p.44, 2016.

M. Wyart and M. E. Cates, Discontinuous shear thickening without inertia in dense non-brownian suspensions, Phys. Rev. Lett, vol.112, p.44, 2014.

L. P. Faucheux and A. J. Libchaber, Confined brownian motion, Phys.Rev. E, vol.49, p.45, 1994.

E. R. Dufresne, T. M. Squires, M. P. Brenner, and D. G. Grier, Hydrodynamic coupling of two brownian spheres to a planar surface, Phys. Rev. Lett, vol.85, p.45, 2000.

B. U. Felderhof, Effect of the wall on the velocity autocorrelation function and long-time tail of brownian motion, J. Phys. Chem. B, vol.109, p.45, 2005.

O. Bénichou, A. Bodrova, D. Chakraborty, P. Illien, A. Law et al., Geometry-induced superdiffusion in driven crowded systems, Phys. Rev. Lett, vol.111, p.45, 2013.

J. Mo, A. Simha, and M. G. Raizen, Broadband boundary effects on brownian motion, Phys.Rev. E, vol.92, p.45, 2015.

T. Bickel, Brownian motion near a liquid-like membrane, Eur. Phys. J. E, vol.20, issue.379, p.45, 2006.
URL : https://hal.archives-ouvertes.fr/hal-01552894

A. Daddi-moussa-ider, A. Guckenberger, and S. Gekle, Particle mobility between two planar elastic membranes: Brownian motion and membrane deformation, Physics of Fluids, vol.28, p.45, 2016.

A. A. Pitenis, D. Dowson, and W. G. Sawyer, Leonardo da vinci's friction experiments: an old story acknowledged and repeated, Tribology Letters, vol.56, p.47, 2014.

G. Amontons, Mémoires de l'Académie Royale A, page 251, 1699, vol.47, p.49

C. Coulomb, Théorie des machines simples, Mem. Math. Phys. Paris, vol.10, p.49, 1785.

I. M. Stuart, Capstan equation for strings with rigidity, British Journal of Applied Physics, vol.12, p.52, 1961.

S. W. Attaway, The mechanics of friction in rope rescue, International Technical Rescue Symposium, vol.47, p.52, 1999.

D. Dowson and D. Dowson, History of tribology, p.47, 1979.

F. P. Bowden, D. Tabor, and G. I. Taylor, The area of contact between stationary and moving surfaces, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, vol.169, p.47, 1939.

L. Bocquet, E. Charlaix, S. Ciliberto, and J. Crassous, Moisture-induced ageing in granular media and the kinetics of capillary condensation, Nature, vol.396, p.47, 1998.

J. Crassous, L. Bocquet, S. Ciliberto, and C. Laroche, Humidity effect on static aging of dry friction, Europhysics Letters, vol.47, p.47, 1999.

A. Vanossi, N. Manini, M. Urbakh, S. Zapperi, and E. Tosatti, Colloquium: Modeling friction: From nanoscale to mesoscale, Rev. Mod. Phys, vol.85, p.47, 2013.

B. Bhushan, J. N. Israelachvili, and U. Landman, Nanotribology: friction, wear and lubrication at the atomic scale, Nature, vol.374, p.47, 1995.

J. Cumings and A. Zettl, Low-friction nanoscale linear bearing realized from multiwall carbon nanotubes, Science, vol.289, p.54, 2000.

A. Niguès, A. Siria, P. Vincent, P. Poncharal, and L. Bocquet, Ultrahigh interlayer friction in multiwalled boron nitride nanotubes, Nature materials, vol.13, p.54, 2014.

A. Fall, B. Weber, M. Pakpour, N. Lenoir, N. Shahidzadeh et al., Sliding friction on wet and dry sand, Phys. Rev. Lett, vol.112, p.49, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01163687

E. Brown, A. Nasto, A. G. Athanassiadis, and H. M. Jaeger, Strain stiffening in random packings of entangled granular chains, Phys. Rev. Lett, vol.108, p.48, 2012.

D. D. Smeak, The chinese finger trap suture technique for fastening tubes and catheters, Journal of the American Animal Hospital Association, vol.26, p.52, 1990.

P. B. Warren, R. C. Ball, and R. E. Goldstein, Why clothes don't fall apart: Tension transmission in staple yarns, Phys. Rev. Lett, vol.120, p.48, 2018.

S. Poincloux, M. Adda-bedia, and F. Lechenault, Crackling dynamics in the mechanical response of knitted fabrics, Phys. Rev. Lett, vol.121, p.48, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02355564

S. , Capstan friction model for dna ejection from bacteriophages, Physical Review Letters, vol.109, p.48, 2012.

A. Ward, F. Hilitski, W. Schwenger, D. Welch, A. W. Lau et al., Solid friction between soft filaments, Nature Materials, vol.14, p.48, 2015.

A. Baule, F. Morone, H. J. Herrmann, and H. A. Makse, Edwards statistical mechanics for jammed granular matter, Rev. Mod. Phys, vol.90, p.51, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02360631

E. Secchi, S. Marbach, A. Niguès, D. Stein, A. Siria et al., Massive radius-dependent flow slippage in carbon nanotubes, Nature, vol.537, p.53, 2016.

J. D. Mcgraw, M. Klos, A. Bridet, H. Hahl, M. Paulus et al., Influence of bidisperse self-assembled monolayer structure on the slip boundary condition of thin polymer films, The Journal of Chemical Physics, vol.146, p.54, 2017.

T. Ondarcuhu, V. Thomas, M. Nunez, E. Dujardin, A. Rahman et al., Wettability of partially suspended graphene, Sci. Rep, vol.6, p.54, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01712012

M. Delmas, M. Monthioux, and T. Ondarcuhu, Contact angle hysteresis at the nanometer scale, Phys. Rev. Lett, vol.106, p.54, 2011.
URL : https://hal.archives-ouvertes.fr/hal-02106208

T. K. Nielsen, U. Bösenberg, R. Gosalawit, M. Dornheim, Y. Cerenius et al., A reversible nanoconfined chemical reaction, ACS Nano, vol.4, p.3903, 2010.