PUBLICATIONS


    Review papers:

  1. J. Eggers, M. A. Fontelos. Cusps in interfacial problems , http://arxiv:0910.3499 (2009)

  2. D. Bonn, J. Eggers, J. Indekeu, J. Meunier, E. Rolley. Wetting and spreading , Rev. Mod. Phys. 81 , 739 (2009)

  3. J. Eggers, M. A. Fontelos The role of self-similarity in singularities of PDE's , Nonlinearity 22 , R1 (2009)
  4. J. Eggers, E. Villermaux Physics of liquid jets , Rep. Prog. Phys. 71 , 036601 (2008)

  5. J. Eggers. Drop formation - an overview , ZAMM 85 , 400 (2005)
  6. J. Eggers. Breakup and colaescence of free-surface flow , book chapter contributed to "Handbook of materials modeling", S. Yip, Editor, Springer, p. 1403 (2005)

  7. J. Eggers. Hydrodynamic Singularities. in: J. Parisi, S. C. Mueller, and W. Zimmermann (eds.), A Perspective Look at Nonlinear Media in Physics , Chemistry, and Biology, Springer, p. 305 (1998)
  8. J. Eggers. Nonlinear dynamics and breakup of free-surface flows. Rev. Mod. Phys. 69, 865 (1997)
  9. Drops, Cusps, and Bubbles:

  10. C. Lamstaes, J. Eggers Blunting of conical tips by surface diffusion ,

  11. A. Javadi, J. Eggers, D. Bonn, M. Habibi, N.M. Ribe Delayed capillary breakup of falling viscous jets ,

  12. J. Eggers Stability of a viscous pinching thread , Phys. Fluids 24, 072103 (2012)

  13. M. A. Fontelos, J. Snoeijer, J. Eggers The spatial structure of bubble pinch-off , SIAM J. Appl. Math. 71 , 1696 (2011)

  14. J. Eggers, The subtle dynamics of liquid sheets, J. Fluid Mech. 672 , 1 (2011)

  15. L.V. Zhang, P. Brunet, J. Eggers, R.D. Deegan Wavelength selection in the crown splash, Phys. Fluids 22 , 122105 (2010)

  16. J. Eggers, S. Courrech du Pont Comment on "Force Balance at the Transition from Selective Withdrawal to Viscous Entrainment", Phys. Rev. Lett. 105, 089401 (2010)
  17. J. Eggers, A.F. Smith Free streamline flows with singularities, J. Fluid Mech. 647 , 187 (2010)
  18. J. Eggers, M. Fontelos, C. Josserand, S. Zaleski Drop dynamics after impact on a solid wall: theory and simulations, Phys. Fluids 22 , 062101 (2010)
  19. J. Eggers and J. Hoppe Singularity formation for timelike extremal hypersurfaces , Phys. Lett. B 680, 274-278 (2009)
  20. E. Alvarez-Lacalle, J. Casademunt, J. Eggers Pinch-off singularities in rotating Hele-Shaw flow at high viscosity contrast, Phys. Rev. E 80 , 056306 (2009)

  21. J. Sébilleau, L. Limat, J. Eggers Flow separation from a stationary meniscus , J. Fluid Mech. 633 , 137 (2009)
  22. J. Eggers, S. Courrech du Pont Numerical analysis of tips in viscous flow , Phys. Rev. E 79 , 066311 (2009)
  23. R. D. Deegan, P. Brunet, J. Eggers Complexities of Splashing, Nonlinearity 21 , C1 (2008)
  24. J. Eggers, M.A. Fontelos, D. Leppinen, J.H. Snoeijer Theory of the collapsing axisymmetric cavity , Phys. Rev. Lett. 98 , 094502 (2007)
  25. J. Eggers, Singularities and Similarities , in: Thin films of soft matter, edited by S. Kalliadasis and U. Thiele, Springer, p. 95 (2007)
  26. R. Ishiguro, F. Graner, E. Rolley, S. Balibar, J. Eggers Dripping of a crystal , Phys. Rev. E 75 , 041606 (2007)
  27. Y. Hennequin, D. G. A. L. Aarts, J. H. van der Wiel, G. Wegdam, J. Eggers, H. N. W. Lekkerkerker, D. Bonn, Drop formation by thermal fluctuations at an ultralow surface tension , Phys. Rev. Lett. 97 , 244503 (2006)
  28. S. Courrech du Pont, J. Eggers Sink flow deforms the interface between a viscous liquid and air into a tip singularity , Phys. Rev. Lett. 96 , 034501 (2006)
  29. J. Eggers, M.A. Fontelos Isolated inertialess drops cannot break up , J. Fluid Mech. 530 , 177 (2005)
  30. É. Lorenceau, D. Quéré, J. Eggers, Air entrainment by a visocus jet plunging into a bath , Phys. Rev. Lett. 93 , 254501 (2004)

  31. J. Eggers. A brief history of drop formation , in: Nonsmooth Mechanics and Analysis, edited by P. Alart, O. Maisonneuve, and R.T. Rockafellar, Springer, p. 163 (2006).

  32. L. Duchemin, J. Eggers, C. Josserand. Inviscid coalescence of drops , J. Fluid Mech. 487 , 167 (2003)
  33. J. Eggers. Dynamics of liquid nanojets , Phys. Rev. Lett. 89 , 084502 (2002)

  34. J. Eggers. Air entrainment through free-surface cusps , Phys. Rev. Lett. 86 , 4290 (2001)

  35. J. Eggers. Singularities in Droplet Pinching with vanishing Viscosity. SIAM J. Appl. Math. 60, 1997 (2000)
  36. J. Eggers, M. P. Brenner. Spinning jets , in: H.-C. Chang (ed.), Proceedings of the IUTAM Symposium on Nonlinear Waves in Multi-Phase Flow,Kluwer, Dordrecht, p.185 (2000).

  37. J. Eggers, J. Lister, H. A. Stone. Coalescence of Liquid Drops. J. Fluid Mech. 401 , 293 (1999)
  38. I. Cohen, M. P. Brenner, J. Eggers, S. R. Nagel. Two fluid drop snap-off problem: experiment and theory Phys. Rev. Lett. 83 , 1147 (1999)
  39. J. Eggers. Coalescence of Spheres by Surface Diffusion. Phys. Rev. Lett. 80, 2634 (1998)
  40. J. Eggers. Hydrodynamic Singularities. in: J. Parisi, S. C. Mueller, and W. Zimmermann (eds.), A Perspective Look at Nonlinear Media in Physics , Chemistry, and Biology (Springer, Berlin,1998)
  41. M. P. Brenner, J. Eggers, K. Joseph, S. R. Nagel, X. D. Shi. Breakdown of scaling in droplet fission at high Reynolds number. Phys. Fluids 9, 1573 (1997)
  42. M. P. Brenner, X. D. Shi, J. Eggers, S. R. Nagel. The bifurcation of liquid drops Phys. Fluids 7, S2 (1995)
  43. J. Eggers. Theory of drop formation. Phys. Fluids 7, 941 (1995)
  44. J. Eggers, T. F. Dupont. Drop Formation in a One-Dimensional Approximation of the Navier-Stokes Equation. J. Fluid Mech. 262, 205 (1994)
  45. J. Eggers. Universal Pinching of 3D Axisymmetric Free-Surface Flow. Phys. Rev. Lett. 71, 3458 (1993)

    Contact lines:

  46. J. H. Snoeijer, J. Eggers, C. H. Venner. Similarity theory of lubricated Hertzian contacts

  47. T. S. Chan, J. H. Snoeijer, J. Eggers. Theory of the forced wetting transition , Phys. Fluids 24, 072104 (2012)

  48. A. Daerr, J. Eggers, L. Limat, N. Valade, General mechanism for the meandering instability of rivulets of Newtonian fluids , Phys. Rev. Lett. 106, 184501 (2011)

  49. J. Eggers, L. Pismen, Nonlocal description of evaporating drops , Phys. Fluids 22, 112101 (2010)

  50. J. Snoeijer, J. Eggers, Asymptotic analysis of the dewetting rim , Phys. Rev. E 82, 056314 (2010)

  51. J. H. Snoeijer, P. Brunet, J. Eggers. Maximum size of drops levitated by an air cushion , Phys. Rev. E 79, 036307 (2009)

  52. J. Ziegler, J. H. Snoeijer, J. Eggers. Film transitions of receding contact lines, Eur. Phys. J. Special Topics 166, 177 (2009)

  53. P. Brunet, J. Eggers, R.D. Deegan. Motion of a drop driven by substrate vibrations , Eur. Phys. J. Special Topics 166, 11 (2009)

  54. L.M. Pismen, J. Eggers. Solvability condition for the moving contact line , Phys. Rev. E 78, 056304 (2008)

  55. J. H. Snoeijer, J. Ziegler, B. Andreotti, M. Fermigier, J. Eggers. Thick films of viscous fluid coating a plate withdrawn from a liquid reservoir , Phys. Rev. Lett. 100, 244502 (2008)

  56. P. Brunet, J. Eggers, R.D. Deegan. Vibration-induced climbing of drops , Phys. Rev. Lett. 99, 144501 (2007)

  57. J. Eggers. Coupling the large and the small , Nature Phys. 3, 145 (2007)

  58. J. H. Snoeijer, N. Le Grand-Piteira, L. Limat, H.A. Stone, J. Eggers. Cornered drops and rivulets , Phys. Fluids 19, 042104 (2007)

  59. J. Eggers. Contact line motion for partially wetting fluids , Phys. Rev. E 72, 061605 (2005)

  60. J. Eggers. Existence of receding and advancing contact lines, Phys. Fluids 17, 082106 (2005)

  61. J. Eggers. Hydrodynamic theory of forced dewetting, Phys. Rev. Lett. 93, 094502 (2004)

  62. J. Eggers. Toward a description of contact line motion at higher capillary numbers , Phys. Fluids 16, 3491 (2004)
  63. J. Eggers, R. Evans. Comment on "Dynamic Wetting by liquids of different viscosity", by T.D. Blake and Y.D. Shikhmurzaev, J. Colloid Interf. Sci. 280, 537 (2004)
  64. ...and here is Blake and Shikhmurzaev's response

  65. J. Eggers, H. A. Stone. Characteristic lengths at moving contact lines for a perfectly wetting fluid: the influence of speed on the dynamic contact angle , J. Fluid Mech. 505, 309 (2004)
  66. Complex fluids:

  67. M. Aytouna, J. Paredes, N. Shahidzadeh-Bonn, S. Moulinet, C. Wagner, Y. Amarouchene, J. Eggers, D. Bonn Drop formation in non-Newtonian fluids , Phys. Rev. Lett. 110, 034501 (2013)
  68. R. Sattler, S. Gier, J. Eggers, C. Wagner. The final stages of capillary break-up of polymer solutions , Phys. Fluids 24, 023101 (2012)
  69. R. Sattler, C. Wagner, J. Eggers. Blistering pattern and formation of nanofibers in capillary thinning of polymer solutions , Phys. Rev. Lett. 100, 164502 (2008)
  70. C. Clasen, J. Eggers, M. A. Fontelos, J. Li, G. H. McKinley. The beads-on-string structure of viscoelastic threads , J. Fluid Mech. 556 , 283 (2006)
  71. C. Wagner, Y. Amarouchene, D. Bonn, J. Eggers. Droplet detachment and satellite bead formation in visco-elastic fluids , Phys. Rev. Lett. 95 , 164504 (2005)
  72. Sand, Beads, and Foams:

  73. J. Hickford, R. Jones, S. Courrech du Pont, J. Eggers. Knotting probability of a shaken ball-chain , Phys. Rev. E 74 , 052101 (2006)
  74. J. Eggers. Sand as Maxwell's demon Phys. Rev. Lett. 83 , 5322 (1999)
  75. J. Eggers, H. Riecke. A continuum description of vibrated sand Phys. Rev. E 59, 4476 (1999)
  76. S. A. Koehler, H. A. Stone, M. P. Brenner, J. Eggers. Dynamics of foam drainage Phys. Rev. E 58, 2097 (1998)
  77. Turbulence:

  78. J. Eggers, Z. J. Wang. Crossover behavior of turbulent velocity fluctuations. Phys. Rev. E. 57, 4281 (1998)
  79. C. Uhlig, J. Eggers. Singularities in cascade models of the Euler equation. Z. Phys. B 103, 69 (1997)
  80. C. Uhlig, J. Eggers. Local coupling of shell models leads to anomalous scaling. Z. Phys. B 102, 513 (1997)
  81. J. Eggers. Multifractal scaling from nonlinear turbulence dynamics. Phys. Rev. E 50, 285 (1994)
  82. J. Eggers. Intermittency in dynamical models of turbulence. Phys. Rev. A 46, 1951 (1992)
  83. J. Eggers, S. Grossmann. Effect of dissipation fluctuations on anomalous velocity scaling in turbulence Phys. Rev. A 45, 2360 (1992)
  84. J. Eggers, S. Grossmann. Does deterministic chaos imply intermittency in fully developed turbulence? Phys. Fluids A 3, 1958 (1991)
  85. J. Eggers, S. Grossmann. Anomalous turbulent velocity scaling from the Navier-Stokes equation. Phys. Lett. A 156, 444 (1991)
  86. J. Eggers, S. Grossmann. Origin of the Oboukhov scaling relation in turbulence Phys. Lett. A 153, 12 (1991)
  87. Statistical Physics:

  88. A. Malins, J. Eggers, C.P. Royall, S.R. Williams, H. Tanaka Identification of long-lived clusters and their link to slow dynamics in a model glass former J. Chem. Phys. 138, 12A535 (2013)
  89. M. Godonoga, A. Malins, J. Eggers, C. P. Royall. Local structure of liquid-vapour interfaces Mol. Phys. 109, 1393 (2011)
  90. A. Malins, S. R. Williams, J. Eggers, H. Tanaka, C. P. Royall. The effect of inter-cluster interactions on the structure of colloidal clusters J. Non-Crystalline Solids 357, 760 (2011)
  91. A. Malins, S. R. Williams, J. Eggers, H. Tanaka, C. P. Royall. Geometric frustration in small colloidal clusters Phys. Lett. A 21, 425103 (2009)
  92. R. Schloms, J. Eggers, V. Dohm. Nonuniversal Critical Behavior along the lambda-line of 4He. Jap. J. Appl. Phys. 26, Supplement 26-3 (1987)
  93. Popular articles:

  94. J. Eggers. Von der Geburt eines Tropfens. (The birth of a drop) in: Wasser, published by Kunst und Ausstellungshalle der Bundesrepublik Deutschland (2000) (in German)

  95. J. Eggers. Wie tropft ein Wasserhahn? (How does a faucet drip?) Essener Unikate 11, 22 (1999)
  96. J. Eggers. Suction power provides a new route to microdrops. (Physics in Action column) Physics World 11, 27(1998)
  97. J. Eggers. Tropfenbildung. (Drop formation) Phys. Bl. 53, 431 (1997)
  98. S. Hoppenau, J. Eggers. Rutherford cross sections measured with nuclear track detectors. Eur. J. Phys. 6, 86 (1985)