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Datta, “Electronic transport in mesoscopic systems”, Cambridge Uni- versity Press [2] M

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Bibliography

[1] S. Datta, “Electronic transport in mesoscopic systems”, Cambridge Uni- versity Press

[2] M. Macucci, L. Bonci, ”Nanoscale device modeling”, chapter 13 of ”Nan- odevice Modeling and Nanoelectronics” (vol. 10 of ”Handbook of The- oretical and Computational Nanotechnology”), edited by M. Rieth and W. Schommers, American Scientific Publishers, p. 687, 2006.

[3] G. F. Roach, “Green’s functions”, Cambridge University Press

[4] E. N. Economou, “Green’s functions in quantum physics”, Springer

[5] W. H. Press, S. A. Teukolsky, W. T. Vetterling, and B. P. Flannery,

“Numerical recipes in Fortran”, Cambridge University Press

[6] F. Luccio, “La struttura degli algoritmi”, Bollati Boringhieri

[7] G. Metalidis, and P. Bruno, “Green’s function technique for studying electron flow in two-dimensional mesoscopic samples”, Physical Review B, 72, 235304 (2005)

[8] M. Macucci, and P. Marconcini, “High-resolution numerical study of conductance and noise imaging of mesoscopic devices”, Journal of Com- putational Electronic, 3, 429-433 (2004)

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[9] F. Stern, and W. E. Howard, “Properties of semiconductor surface inver- sion layers in the electric quantum limit”, Physical Review, 163, number 3, 816-835 (1967)

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