Hegde, Ganesh, Povolotskyi, Michael, Kubis, Tillmann, Charles, James, Klimeck, Gerhard (2014) An environment-dependent semi-empirical tight binding model suitable for electron transport in bulk metals, metal alloys, metallic interfaces, and metallic nanostructures. II. Application—Effect of quantum confinement and homogeneous strain on Cu conductance. Journal of Applied Physics, 115 (12). 123704pp. doi:10.1063/1.4868979
Reference Type | Journal (article/letter/editorial) | ||
---|---|---|---|
Title | An environment-dependent semi-empirical tight binding model suitable for electron transport in bulk metals, metal alloys, metallic interfaces, and metallic nanostructures. II. Application—Effect of quantum confinement and homogeneous strain on Cu conductance | ||
Journal | Journal of Applied Physics | ||
Authors | Hegde, Ganesh | Author | |
Povolotskyi, Michael | Author | ||
Kubis, Tillmann | Author | ||
Charles, James | Author | ||
Klimeck, Gerhard | Author | ||
Year | 2014 (March 28) | Volume | 115 |
Issue | 12 | ||
Publisher | AIP Publishing | ||
DOI | doi:10.1063/1.4868979Search in ResearchGate | ||
Generate Citation Formats | |||
Mindat Ref. ID | 5196303 | Long-form Identifier | mindat:1:5:5196303:3 |
GUID | 0 | ||
Full Reference | Hegde, Ganesh, Povolotskyi, Michael, Kubis, Tillmann, Charles, James, Klimeck, Gerhard (2014) An environment-dependent semi-empirical tight binding model suitable for electron transport in bulk metals, metal alloys, metallic interfaces, and metallic nanostructures. II. Application—Effect of quantum confinement and homogeneous strain on Cu conductance. Journal of Applied Physics, 115 (12). 123704pp. doi:10.1063/1.4868979 | ||
Plain Text | Hegde, Ganesh, Povolotskyi, Michael, Kubis, Tillmann, Charles, James, Klimeck, Gerhard (2014) An environment-dependent semi-empirical tight binding model suitable for electron transport in bulk metals, metal alloys, metallic interfaces, and metallic nanostructures. II. Application—Effect of quantum confinement and homogeneous strain on Cu conductance. Journal of Applied Physics, 115 (12). 123704pp. doi:10.1063/1.4868979 | ||
In | (2014, March) Journal of Applied Physics Vol. 115 (12) AIP Publishing |
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