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Open Access research that pioneers intelligent infrastructure

Strathprints makes available scholarly Open Access content by researchers in the Department of Civil & Environmental Engineering, based within the Faculty of Engineering.

Civil & Environmental Engineering hosts the Centre for Intelligent Infrastructure which harnesses techniques from a variety of sciences and engineering in order to solve problems surrounding safety and resilience of structures supporting energy generation, waste storage, transportation and urban infrastructure. The wider Department also demonstrates specialisms in ground engineering and energy geosciences, as well as environmental sustainability.

Explore the Open Access research of Civil & Environmental Engineering. Or explore all of Strathclyde's Open Access research...

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Number of items: 11.

Article

Giblin, Stephen P. and Fujiwara, Akira and Yamahata, Gento and Bae, Myung-Ho and Kim, Nam and Rossi, Alessandro and Möttönen, Mikko and Kataoka, Masaya (2019) Evidence for universality of tunable-barrier electron pumps. Metrologia, 56 (4). 044004. ISSN 1681-7575

Schaal, Simon and Rossi, Alessandro and Ciriano-Tejel, Virginia N. and Yang, Tsung-Yeh and Barraud, Sylvain and Morton, John J.L. and Gonzalez-Zalba, M. Fernando (2019) A CMOS dynamic random access architecture for radio-frequency readout of quantum devices. Nature Electronics, 2 (6). pp. 236-242. ISSN 2520-1131

West, Anderson and Hensen, Bas and Jouan, Alexis and Tanttu, Tuomo and Yang, Chih-Hwan and Rossi, Alessandro and Gonzalez-Zalba, M. Fernando and Hudson, Fay and Morello, Andrea and Reilly, David J. and Dzurak, Andrew S. (2019) Gate-based single-shot readout of spins in silicon. Nature Nanotechnology, 14 (5). pp. 437-443. ISSN 1748-3387

Ahmed, Imtiaz and Haigh, James A. and Schaal, Simon and Barraud, Sylvain and Zhu, Yi and Lee, Chang-min and Amado, Mario and Robinson, Jason W.A. and Rossi, Alessandro and Morton, John J.L. and Gonzalez-Zalba, M. Fernando (2018) Radio-frequency capacitive gate-based sensing. Physical Review Applied, 10 (1). 014018. ISSN 2331-7019

Rossi, Alessandro and Klochan, Jevgeny and Timoshenko, Janis and Hudson, Fay E. and Möttönen, Mikko and Rogge, Sven and Dzurak, Andrew S. and Kashcheyevs, Vyacheslavs and Tettamanzi, Giuseppe C. (2018) Gigahertz single-electron pumping mediated by parasitic states. Nano Letters, 18 (7). pp. 4141-4147. ISSN 1530-6992

Zhao, R. and Rossi, A. and Giblin, S. P. and Fletcher, J. D. and Hudson, F. E. and Möttönen, M. and Kataoka, M. and Dzurak, A. S. (2017) Thermal-error regime in high-accuracy gigahertz single-electron pumping. Physical Review Applied, 8 (4). 044021. ISSN 2331-7019

Rossi, A. and Zhao, R. and Dzurak, A. S. and Gonzalez-Zalba, M. F. (2017) Dispersive readout of a silicon quantum dot with an accumulation-mode gate sensor. Applied Physics Letters, 110 (21). 212101. ISSN 0003-6951

Gamble, John King and Harvey-Collard, Patrick and Jacobson, N. Tobias and Baczewski, Andrew D. and Nielsen, Erik and Maurer, Leon and Montaño, Inès and Rudolph, Martin and Carroll, M. S. and Yang, C. H. and Rossi, A. and Dzurak, A. S. and Muller, Richard P. (2016) Valley splitting of single-electron Si MOS quantum dots. Applied Physics Letters, 109 (25). 253101. ISSN 0003-6951

Tanttu, Tuomo and Rossi, Alessandro and Tan, Kuan Yen and Mäkinen, Akseli and Chan, Kok Wai and Dzurak, Andrew S. and Möttönen, Mikko (2016) Three-waveform bidirectional pumping of single electrons with a silicon quantum dot. Scientific Reports, 6. 36381. ISSN 2045-2322

Tanttu, Tuomo and Rossi, Alessandro and Tan, Kuan Yen and Huhtinen, Kukka Emilia and Chan, Kok Wai and Möttönen, Mikko and Dzurak, Andrew S. (2015) Electron counting in a silicon single-electron pump. New Journal of Physics, 17 (10). ISSN 1367-2630

Ferrus, T. and Rossi, A. and Andreev, A. and Kodera, T. and Kambara, T. and Lin, W. and Oda, S. and Williams, D. A. (2014) GHz photon-activated hopping between localized states in a silicon quantum dot. New Journal of Physics, 16. 013016. ISSN 1367-2630

This list was generated on Sat Sep 21 08:03:42 2019 BST.