References 371
[25] F. Aletet al., ‘The ALPS project: open source software for strongly correlated systems.’ ar Xiv:
cond-mat/0410407, (15 October 2004).
[26] M. A. Nielsen and I. L. Chuang,Quantum Computing and Quantum Information Theory.
Cambridge, Cambridge University Press, 2000.
[27] W. H. Press, S. A. Teukolsky, W. T. Vetterling, and B. P. Flannery,Numerical Recipes, 2nd edn.
Cambridge, Cambridge University Press, 1992.
[28] E. Carlon, A. Drzewinski, and J. M. J. van Leeuwen, ‘Crossover behavior for long reptating ́
polymers,’Phys. Rev. E, 64 (2001), 010801(R).
[29] A. Drzewinski, E. Carlon and J. M. J. van Leeuwen, ‘Pulling reptating polymers by one end: ́
magnetophoresis in the Rubinstein–Duke model,’Phys. Rev. E, 68 (2003), 061801.
[30] R. M. Noack, S. R. White, and D. J. Scalapino, ‘The density matrix renormalization group for
Fermion systems, Computer Simulations in Condensed Matter Physics VII’. Berlin, Heidelberg,
Springer, 1994, pp. 93–163.
[31] U. Schollwöck, ‘The density-matrix renormalization group,’Rev. Mod. Phys., 77 (2003),
259–315.
[32] K. Hallberg, ‘Density matrix renormalization: a review of the method and its applications,’
inTheoretical Methods for Strongly Correlated Electrons(D. Senechal, A-M. Tremblay, and
C. Bourbonnais, eds.), CRM Series in Mathematical Physics. Berlin, Heidelberg, Springer, 2003.
[33] I. Peschel, X. Wang, M. Kaulke, and K. Hallberg, eds.,Density Matrix Renormalization: A New
Numerical Method in Physics. Lecture Notes in Physics. Berlin, Heidelberg, Springer, 1999.