[1] J. F. Bürgler, R. E. Bank, W. Fichtner, R. K. Smith:
A new discretization scheme for the semiconductor current continuity equations. IEEE Trans. on CAD 8 (1989), 479–489.
DOI 10.1109/43.24876
[3] J. Franců:
Monotone operators. A survey directed to applications to differential equations. Apl. Mat. 35 (1990), 257–301.
MR 1065003
[4] S. Fučík, A. Kufner: Nonlinear Differential Equations. Czech edition – SNTL, Prague, 1978.
[5] H. Gajewski:
On uniqueness and stability of steady-state carrier distributions in semiconductors. Proc. Equadiff Conf. 1985, Springer, Berlin, 1986, pp. 209–219.
MR 0877126 |
Zbl 0609.35024
[6] K. Gröger:
On steady-state carrier distributions in semiconductor devices. Apl. Mat. 32 (1987), 49–56.
MR 0879329
[7] H. K. Gummel:
A self-consistent iterative scheme for one-dimensional steady state transistor calculations. IEEE Trans. on Electron Devices ED-11 (1964), 455–465.
DOI 10.1109/T-ED.1964.15364
[9] J. W. Jerome:
Consistency of semiconductor modelling: An existence/stability analysis for the stationary Van Roosbroeck system. SIAM J.Appl.Math. 45 (1985), 565–590.
DOI 10.1137/0145034 |
MR 0796097
[10] P. A. Markowich:
The Stationary Semiconductor Device Equations. Springer-Verlag, Wien–New York 1986.
MR 0821965
[12] J. Miller:
Mixed FEM for semiconductor devices. In: Numerical Mathematics. Singapore 1988. Proc. Int. Conf., R.P. Agarwal, Y.M. Chow, S.J. Wilson (eds.), Basel, Birkhäuser Verlag, 1988, pp. 349–356.
MR 1022967
[13] M. S. Mock:
Analysis of Mathematical Models of Semiconductor Devices. Boole Press, Dublin, 1983.
MR 0697094 |
Zbl 0532.65081
[14] J. Nečas:
Introduction to the Theory of Nonlinear Elliptic Equations. Teubner Texte zur Math. 52, Leipzig, 1987.
MR 0731261
[15] M. Pospíšek: Mathematical Methods in Semiconductor Device Modelling. PhD Thesis, MÚ ČSAV, Prague, 1991. (Czech)
[16] M. Pospíšek: Convergent algorithms suitable for the solution of the semiconductor device equations. To be published.
[18] D. L. Scharfetter, H. K. Gummel:
Large signal analysis of a silicon Read diode oscillator. IEEE Trans. Electron Devices ED-16 (1969), 64–77.
DOI 10.1109/T-ED.1969.16566
[19] N. Shigyo, T. Wada, S. Yasuda:
Discretization problem for multidimensional current flow. IEEE Trans. on CAD 8 (1989), 1046–1050.
DOI 10.1109/43.39066
[20] R. S. Varga:
Matrix Iterative Analysis. Prentice-Hall, Englewood Cliffs, NJ, 1962.
MR 0158502