The Wigner Monte-Carlo Method for Nanoelectronic Devices Particle Description of Quantum Transport and Decoherence
| Author/creator | Querlioz, Damien Author |
| Other author | Dollfus, Philippe Author |
| Format | Electronic |
| Publication Info | Wiley-ISTE [Imprint] Hoboken : John Wiley & Sons, Incorporated |
| Supplemental Content | Full text available from Ebook Central - Academic Complete |
| Subjects |
| Series | Iste Ser. |
| Summary | Annotation This book gives an overview of the quantum transport approaches for nanodevices and focuses on the Wigner formalism. It details the implementation of a particle-based Monte Carlo solution of the Wigner transport equation and how the technique is applied to typical devices exhibiting quantum phenomena, such as the resonant tunnelling diode, the ultra-short silicon MOSFET and the carbon nanotube transistor. In the final part, decoherence theory is used to explain the emergence of the semi-classical transport in nanodevices. |
| Access restriction | Available only to authorized users. |
| Technical details | Mode of access: World Wide Web |
| Genre/form | Electronic books. |
| ISBN | 9781118618448 |
| ISBN | 1118618440 (E-Book) Active Record |
| Standard identifier# | 9781118618448 |
| Stock number | 00028608 |
Availability
| Library | Location | Call Number | Status | Item Actions |
|---|---|---|---|---|
| Electronic Resources | Access Content Online | ✔ Available |