P. Degond, F. Poupaud, and A. Yamnahakki. Particle simulation and asymptotic analysis of kinetic equations for modeling a Schottky diode. Mod. Math. Anal. Num. (RAIRO), 30:763-795, 1996.

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Macroscopic Models For Semiconductor Devices: A Review - Jüngel (2000)   (Correct)

....(also see the review article of G erard [102] Further results can be found in, e.g. 37, 38, 157, 184] We refer to [14, 39, 166] for reviews of recent mathematical results. Numerically, the Boltzmann equation has been solved by Monte Carlo methods [7, 8, 148] or deterministic particle methods [26, 27, 60, 175]. An overview of several numerical techniques is given in [215] The numerical simulation of the Boltzmann equation (or the Boltzmann Poisson system) requires a lot of computing power in real life applications. Therefore, simpler models which represent a reasonable compromise between the physical ....

P. Degond, F. Poupaud, and A. Yamnahakki. Particle simulation and asymptotic analysis of kinetic equations for modeling a Schottky diode. Mod. Math. Anal. Num. (RAIRO), 30:763-795, 1996.

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