Mark A. Eriksson
Affiliations: | Physics | University of Wisconsin, Madison, Madison, WI |
Area:
Condensed Matter PhysicsGoogle:
"Mark Eriksson"Mean distance: (not calculated yet)
Children
Sign in to add traineeOlivia M. Castellini | grad student | 2004 | UW Madison |
Matthew S. Marcus | grad student | 2004 | UW Madison |
John R. Peck | grad student | 2004 | UW Madison |
James L. Truitt | grad student | 2004 | UW Madison |
Emma R. Tevaarwerk | grad student | 2005 | UW Madison |
Keith A. Slinker | grad student | 2006 | UW Madison |
Lisa M. McGuire | grad student | 2008 | UW Madison |
Eric Nordberg | grad student | 2010 | UW Madison |
Hyuk J. Ryu | grad student | 2010 | UW Madison |
Weina Peng | grad student | 2011 | UW Madison |
Christine B. Simmons | grad student | 2011 | UW Madison |
Zhan Shi | grad student | 2013 | UW Madison |
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Publications
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Zwolak JP, McJunkin T, Kalantre SS, et al. (2023) Ray-based framework for state identification in quantum dot devices. Prx Quantum : a Physical Review Journal. 2 |
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 |
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 |
Zwolak JP, McJunkin T, Kalantre SS, et al. (2020) Autotuning of Double-Dot Devices In Situ with Machine Learning Physical Review Applied. 13 |
Holman N, Dodson JP, Edge LF, et al. (2020) Microwave engineering for semiconductor quantum dots in a cQED architecture Applied Physics Letters. 117: 083502 |
Jaffe GR, Smith KJ, Brar VW, et al. (2020) Three-omega thermal-conductivity measurements with curved heater geometries Applied Physics Letters. 117: 073102 |
Thorgrimsson B, McJunkin T, MacQuarrie ER, et al. (2020) The effect of external electric fields on silicon with superconducting gallium nano-precipitates Journal of Applied Physics. 127: 215102 |
Neyens SF, Foote RH, Thorgrimsson B, et al. (2020) Erratum: “The critical role of substrate disorder in valley splitting in Si quantum wells” [Appl. Phys. Lett. 112, 243107 (2018)] Applied Physics Letters. 116: 049901 |
Abadillo-Uriel JC, Eriksson MA, Coppersmith SN, et al. (2019) Enhancing the dipolar coupling of a S-T qubit with a transverse sweet spot. Nature Communications. 10: 5641 |
Jaffe GR, Mei S, Boyle CA, et al. (2019) Measurements of the Thermal Resistivity of InAlAs, InGaAs and InAlAs/InGaAs Superlattices. Acs Applied Materials & Interfaces |