Other Publications

  • Zicong Zhou, Béla Joós, and Pik-Yin Lai, "Elasticity of randomly diluted central force networks under tension", Phys. Rev. E 68, 055101(R)-(1-4)(2003) (Rapid Communications). (pdf file)
  • Luc Fournier and Béla Joós, "A Lattice Gas Model for the Kinetics of Rupture of Fluid Bilayer Membranes", Phys. Rev. E 67, 051908-(1-11)(2003); E 68, 039905 (E) (2003).  (this pdf file includes both)
  • Michael Plischke, Daniel Vernon, and Béla Joós, "Model for gelation with explicit solvent effects", Phys. Rev. E 67, 011401-(1-6)(2003). (pdf file)
  • Zicong Zhou and Béla Joós, "Fluctuation formulae for the elastic constants of an arbitrary system", Phys. Rev. B 66, 054101-(1-7)(2002). (pdf file)
  • D.C. Vernon, Michael Plischke and Béla Joós, "Viscoelasticity near the gel-point: a molecular dynamics study", Phys. Rev. E 64, 031505-(1-5)(2001). (pdf file)
  • B. Joós and J. Zhou, "The Peierls-Nabarro model and the mobility of the dislocation line", Phil. Mag. A 81, 1329-1340 (2001) (in memoriam issue for Michael S. Duesbery) (pdf file) 
  • Z. Zhou, Pik-Yin Lai and B. Joós,  "Rigorous Solution for the Elasticity of Diluted Gaussian Spring Networks", Phys. Rev. E 62, 7490-7493 (2000).(pdf file) 
  • B. Joós and Z. Zhou, "Realizing the canonical ensemble in highly entropic inhomogeneous materials",  Phys. Rev. E 61, 2410-2417 (2000). (pdf file
  • M. Plischke, D.C. Vernon, B. Joós, and Z. Zhou, "Entropic rigidity of randomly diluted two- and three-dimensional networks", Phys. Rev. E 60, 3129-3135 (1999). (pdf file)
  • B. Joós, M. Plischke, D.C. Vernon, and Z. Zhou, "Entropic rigidity", in Rigidity Theory and Applications, M.F. Thorpe and P.M. Duxbury, eds. (Kluwer Acad. / Plenum Publ., New York, 1999), p.315-328.(pdf file)
  • Z. Zhou and B. Joós, "Convergence issues in molecular dynamics simulations of highly entropic materials", Mod. and Sim. in Mat. Sci. and Eng., 7, 383-395 (1999). (pdf file
  • Michael Plischke and Béla Joós, "Entropic elasticity of diluted central force networks", Phys. Rev. Lett., 80, 4907-4910 (1998).(pdf file
  • Michael Plischke and Béla Joós, "Recent Developments in the Theory of Rubber Elasticity", Physics in Canada, 53, 184-190 (1997). 
  • Z. Zhou and B. Joós, "Mechanisms of Membrane Rupture: From Cracks to Pores", Phys. Rev. B , 56, 2997-3009 (1997).(pdf file
  • B. Joós and M.S. Duesbery, "Dislocation Kink Migration Energies and the Frenkel-Kontorowa Model", Phys. Rev. B , 55, 11161-11166 (1997).(pdf file)
  • B. Joós and M.S. Duesbery, "The Peierls Stress of Dislocations: An Analytic Formula", Phys. Rev. Lett. , 78, 266-269 (1997).(pdf file)
  • Béla Joós, "The Role of Dislocations in Melting", Chap. 55 in Dislocations in Solids, Vol. 10, F.R.N. Nabarro and M.S. Duesbery, eds. (Elsevier, Amsterdam, 1996), p.505-594. 
  • Sandra J. Barsky, Michael Plischke, Béla Joós, and Zicong Zhou, "Elastic properties of randomly cross-linked polymers", Phys. Rev. E, 54, 5370-5376 (1996).(pdf file
  • M.S. Duesbery and B. Joós, "Dislocation Motion in Silicon - the Shuffle/Glide Controversy", Phil. Mag. Lett., 74, 253-258 (1996). (pdf file)
  • Z. Zhou and B. Joós, "Stability Criteria for Homogeneously Stressed Materials and the Calculation of Elastic constants", Phys. Rev. B, 54, 3841-3850 (1996).(pdf file
  • Z. Zhou and B. Joós, "Vacancy Annealing Kinetics in Finite Monolayer Patches ", Surface Science, 323, 311-322 (1995). 
  • Q. Ren, B. Joós, and M.S. Duesbery, "A Test of the Peierls-Nabarro Model for Dislocations in Silicon", Phys. Rev. B, 52, 13223-13228 (1995); 53, 11883 (1996) (E).