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(Ebook) Simulation of transport in nanodevices by Dollfus, Philippe; Triozon, François ISBN 9781118761779, 9781118761793, 9781771771801, 9781848215665, 9782412442456, 9782612632664, 1118761774, 1118761790, 1771771801

  • SKU: EBN-5700614
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Authors:Dollfus, Philippe; Triozon, François
Pages:396 pages.
Year:2016
Editon:1
Publisher:Wiley-ISTE
Language:english
File Size:16.5 MB
Format:pdf
ISBNS:9781118761779, 9781118761793, 9781771771801, 9781848215665, 9782412442456, 9782612632664, 1118761774, 1118761790, 1771771801
Categories: Ebooks

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(Ebook) Simulation of transport in nanodevices by Dollfus, Philippe; Triozon, François ISBN 9781118761779, 9781118761793, 9781771771801, 9781848215665, 9782412442456, 9782612632664, 1118761774, 1118761790, 1771771801

Linear current-voltage pattern, has been and continues to be the basis for characterizing, evaluating performance, and designing integrated circuits, but is shown not to hold its supremacy as channel lengths are being scaled down. In a nanoscale circuit with reduced dimensionality in one or more of the three Cartesian directions, quantum effects transform the carrier statistics. In the high electric field, the collision free ballistic transform is predicted, while in low electric field the transport remains predominantly scattering-limited. In a micro/nano-circuit, even a low logic voltage of 1 V is above the critical voltage triggering nonohmic behavior that results in ballistic current saturation. A quantum emission may lower this ballistic velocity
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