In this presentation we shortly discuss the evolution of Microelectronics into Nanoelectronics, according to the predictions of Moore's law, and some of the issues related with this evolution. Next, we address the requirements of device modeling related with an extreme device miniaturization, such as the band splitting into multiple subbands and quasi-ballistic transport. Physical models are summarized and a few simulation results of heterojunction TFETs are reported and discussed.

Baccarani, G., Baravelli, E., Gnani, E., Gnudi, A., Reggiani, S. (2015). Theoretical analyses and modeling for nanoelectronics. Editions Frontieres [10.1109/ESSDERC.2015.7324700].

Theoretical analyses and modeling for nanoelectronics

BACCARANI, GIORGIO;BARAVELLI, EMANUELE;GNANI, ELENA;GNUDI, ANTONIO;REGGIANI, SUSANNA
2015

Abstract

In this presentation we shortly discuss the evolution of Microelectronics into Nanoelectronics, according to the predictions of Moore's law, and some of the issues related with this evolution. Next, we address the requirements of device modeling related with an extreme device miniaturization, such as the band splitting into multiple subbands and quasi-ballistic transport. Physical models are summarized and a few simulation results of heterojunction TFETs are reported and discussed.
2015
European Solid-State Device Research Conference
4
9
Baccarani, G., Baravelli, E., Gnani, E., Gnudi, A., Reggiani, S. (2015). Theoretical analyses and modeling for nanoelectronics. Editions Frontieres [10.1109/ESSDERC.2015.7324700].
Baccarani, G.; Baravelli, E.; Gnani, E.; Gnudi, A.; Reggiani, S.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/555336
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