Susan N. Coppersmith
Affiliations: | 1995-2001 | University of Chicago, Chicago, IL | |
2001-2018 | University of Wisconsin, Madison, Madison, WI | ||
2018- | University of New South Wales, Kensington, New South Wales, Australia |
Area:
Condensed Matter Physics, Computer ScienceWebsite:
https://www.physics.unsw.edu.au/research-group/susan-coppersmith-groupGoogle:
"Susan Nan Coppersmith" OR "Susan N. Coppersmith"Bio:
http://www.nasonline.org/member-directory/members/60994.html
DOI: 10.1073/pnas.1222451110
https://www.physics.unsw.edu.au/staff/susan-coppersmith
https://history.aip.org/phn/11501008.html
https://ui.adsabs.harvard.edu/abs/1983PhDT.......109C/abstract
https://books.google.com/books?id=KnNZAAAAYAAJ
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Mean distance: (not calculated yet)
Parents
Sign in to add mentorWilliam Frank Brinkman | grad student | 1983 | Cornell | |
Daniel S. Fisher | grad student | 1983 | Cornell | |
(Dynamics of AN Incommensurate Harmonic Chain) | ||||
N. David Mermin | grad student | 1983 | Cornell |
Children
Sign in to add traineeJordan M. Koss | grad student | 2001 | Chicago (Computer Science Tree) |
James W. Landry | grad student | 2001 | Chicago (Computer Science Tree) |
BETA: Related publications
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Publications
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Paquelet Wuetz B, Losert MP, Koelling S, et al. (2022) Atomic fluctuations lifting the energy degeneracy in Si/SiGe quantum dots. Nature Communications. 13: 7730 |
Hänze M, McMurtrie G, Baumann S, et al. (2021) Quantum stochastic resonance of individual Fe atoms. Science Advances. 7 |
Wuetz BP, Losert MP, Tosato A, et al. (2020) Effect of Quantum Hall Edge Strips on Valley Splitting in Silicon Quantum Wells. Physical Review Letters. 125: 186801 |
Xue X, D’Anjou B, Watson TF, et al. (2020) Repetitive Quantum Nondemolition Measurement and Soft Decoding of a Silicon Spin Qubit Physical Review X. 10 |
Wuetz BP, Losert MP, Tosato A, et al. (2020) Effect of Quantum Hall Edge Strips on Valley Splitting in Silicon Quantum Wells Physical Review Letters. 125 |
Boter JM, Xue X, Krähenmann T, et al. (2020) Spatial noise correlations in a Si/SiGe two-qubit device from Bell state coherences Physical Review B. 101 |
King C, Schoenfield JS, Calderón MJ, et al. (2020) Lifting of spin blockade by charged impurities in Si-MOS double quantum dot devices Physical Review B. 101 |
Zwolak JP, McJunkin T, Kalantre SS, et al. (2020) Autotuning of Double-Dot Devices In Situ with Machine Learning Physical Review Applied. 13 |
Yang Y, Coppersmith SN, Friesen M. (2020) High-fidelity entangling gates for quantum-dot hybrid qubits based on exchange interactions Physical Review A. 101 |
Holman N, Dodson JP, Edge LF, et al. (2020) Microwave engineering for semiconductor quantum dots in a cQED architecture Applied Physics Letters. 117: 083502 |