[1]
J. R. Weertman, (2002) Mechanical behaviour of nanocrystalline metals, Nanostructured Materials: Processing, Properties, and Potential Applications, William Andrew Publishing, Norwich.
Google Scholar
[2]
C.C. Koch, D.G. Morris, K. Lu, A. Inoue, MRS Bulletin 24(2) (1999), p.54.
Google Scholar
[3]
K. S. Kumar, S. Suresh, M.F. Chisholm, J.A. Horton and P. Wang, Acta Mater. 51 (2003), p.387.
Google Scholar
[4]
S.X. McFadden, A.V. Sergueeva, T. Kruml, J. -L. Martin and A.K. Mukherjee, MRS Symposium Series Vol. 634 (2000), p. B1. 3.
Google Scholar
[5]
R.C. Hugo, H. Kung, J.R. Weertman, R. Mitra, J.A. Knapp and D.M. Follstaedt. Acta Mater. 51 (2003), p. (1937).
Google Scholar
[6]
M. Chen, E. Ma, K.J. Hemker, H. Sheng, Y. Wang and X. Cheng , Science 300 (2003), p.1275.
Google Scholar
[7]
J. Markmann, P. Bunzel, H. Rösner, K.W. Liu, K.A. Padmanabhan, R. Birringer, H. Gleiter and J. Weissmüller, Scripta Mat. 49 (2003), p.637.
Google Scholar
[8]
F. Dalla Torre, H. Van Swygenhoven and M. Victoria, Acta Materialia 50 (2002), p.3957.
DOI: 10.1016/s1359-6454(02)00198-2
Google Scholar
[9]
D. Jia, K.T. Ramesh andE. Ma, Ultrafine Grained Materials Edited By R. S. Mishara,S. L. Semiatin,C. Suryanarayana,N. N. Thadhani,T. C. Löwe, TMS (2000), p.301.
Google Scholar
[10]
H. Hahn, and. K.A. Padmanabhan, Phil. Mag. B 76(4) (1997), p.559.
Google Scholar
[11]
F. Cleri and V. Rosato, Phys Rev B 48 (1993), p.22.
Google Scholar
[12]
H. Van Swygenhoven, D. Farkas and A. Caro, Phys Rev B 62 (2000), p.831.
Google Scholar
[13]
P. M. Derlet and H. Van Swygenhoven, Phys Rev B 67 (2002), p.014202.
Google Scholar
[14]
T. Volpp, E. Goering, W.M. Kuschke, E. Artz , Nanostr Mater 8 (1997), p.855.
Google Scholar
[15]
J.R. Weertman and P.G. Sanders, Solid State Phenomena 35-36 (1994), p.249.
Google Scholar
[16]
V. Yamakov, D. Wolf, S.R. Phillpot, A.K. Mukherjee and H. Gleiter, Nature Materials 1 (2002), p.1.
Google Scholar
[17]
D.J. Honeycutt and H.C. Andersen, J Phys Chem 91 (1987), p.4950.
Google Scholar
[18]
H. Swygenhoven, D. Farkas and A. Caro, Phys Rev B 62 (2000), p.831.
Google Scholar
[19]
P.M. Derlet and H. Van Swygenhoven, Phys Rev B 67 (2002), p.014202.
Google Scholar
[20]
P. Keblinski, D. Wolf , S.R. Phillpot and H. Gleiter, Scripta Mater 41 (1999), p.631.
Google Scholar
[21]
J. Cormier, J.M. Rickman and TJ. Delph, J Appl Phys 89 (2001), p.99.
Google Scholar
[22]
H. Van Swygenhoven, P.M. Derlet, Z. Budrovic and A. Hasnaoui, Zeitschrift fur Metallkunde (2003) in press.
DOI: 10.3139/146.031106
Google Scholar
[23]
A. Hasnaoui, H. Van Swygenhoven and P.M. Derlet, Acta Mater 50 (2002), p.3927.
Google Scholar
[24]
H. Van Swygenhoven and P.M. Derlet, Phys Rev B 64 (2001), p.224105.
Google Scholar
[25]
P.M. Derlet and H. Van Swygenhoven, Phys Rev B 67 (2002), p.014202.
Google Scholar
[26]
P.M. Derlet and H. Van Swygenhoven, Scripta Mater 47 (2002), p.719.
Google Scholar
[27]
P.M. Derlet, A. Hasnaoui & H. Van Swygenhoven, Scripta Mater. 49 (2003), p.629.
Google Scholar
[28]
H. Van Swygenhoven, P. M. Derlet and A. Hasnaoui, Phys. Rev. B 66 (2002), p.024101.
Google Scholar
[29]
P. M. Derlet, H. Van Swygenhoven and A. Hasnaoui, Phil. Mag. A (2003) in press.
Google Scholar
[30]
A. Hasnaoui, H. Van Swygenhoven and P.M. Derlet, Science 300 (2003) , p.1550.
Google Scholar
[31]
A. Hasnaoui, H. Van Swygenhoven and P.M. Derlet, Phys Rev B 66 (2002), p.184112.
Google Scholar
[32]
D. Feichtinger, P.M. Derlet and H. Van Swygenhoven, Phys. Rev. B 67 (2003), p.24113.
Google Scholar
[33]
H. Van Swygenhoven, Science Apr 5 296 (2002), p.66.
Google Scholar
[34]
Z. Budrovic, H. Van Swygenhoven, P.M. Derlet, S. Van Petegem and B. Schmitt, submitted.
Google Scholar