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Dzurak, A.S.
306
results:
Search for persons
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Online (306)
Mediatypes
Articles (Online) (124)
Bookchapter (Online) (1)
OpenAccess-fulltext (180)
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1
Coherent control of electron spin qubits in silicon using a..:
Vahapoglu, E.
;
Slack-Smith, J. P.
;
Leon, R. C. C.
...
npj Quantum Information. 8 (2022) 1 - p. , 2022
Link:
https://doi.org/10.1038/..
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2
Fast Bayesian Tomography of a Two-Qubit Gate Set in Silicon:
Evans, T.J.
;
Huang, W.
;
Yoneda, J.
...
Physical Review Applied. 17 (2022) 2 - p. , 2022
Link:
https://doi.org/10.1103/..
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3
Coherent spin qubit transport in silicon:
Yoneda, J.
;
Huang, W.
;
Feng, M.
...
Nature Communications. 12 (2021) 1 - p. , 2021
Link:
https://doi.org/10.1038/..
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4
Scaling silicon-based quantum computing using CMOS technolo..:
Gonzalez-Zalba, M. F.
;
de Franceschi, S.
;
Charbon, E.
...
Nature Electronics. 4 (2021) 12 - p. 872-884 , 2021
Link:
https://doi.org/10.1038/..
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5
Coherent spin control of s-, p-, d- and f-electrons in a si..:
Leon, R. C. C.
;
Yang, C. H.
;
Hwang, J. C. C.
...
Nature Communications. 11 (2020) 1 - p. , 2020
Link:
https://doi.org/10.1038/..
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6
Operation of a silicon quantum processor unit cell above on..:
Yang, C. H.
;
Leon, R. C. C.
;
Hwang, J. C. C.
...
Nature. 580 (2020) 7803 - p. 350-354 , 2020
Link:
https://doi.org/10.1038/..
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7
Fidelity benchmarks for two-qubit gates in silicon:
Huang, W.
;
Yang, C. H.
;
Chan, K. W.
...
Nature. 569 (2019) 7757 - p. 532-536 , 2019
Link:
https://doi.org/10.1038/..
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8
Single-spin qubits in isotopically enriched silicon at low ..:
Zhao, R.
;
Tanttu, T.
;
Tan, K. Y.
...
Nature Communications. 10 (2019) 1 - p. , 2019
Link:
https://doi.org/10.1038/..
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9
Geometric formalism for constructing arbitrary single-qubit..:
Zeng, Junkai
;
Yang, C. H.
;
Dzurak, A. S.
.
Physical Review A. 99 (2019) 5 - p. , 2019
Link:
https://doi.org/10.1103/..
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10
Integrated silicon qubit platform with single-spin addressa..:
Fogarty, M. A.
;
Chan, K. W.
;
Hensen, B.
...
Nature Communications. 9 (2018) 1 - p. , 2018
Link:
https://doi.org/10.1038/..
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11
Spin and orbital structure of the first six holes in a sili..:
Liles, S. D.
;
Li, R.
;
Yang, C. H.
...
Nature Communications. 9 (2018) 1 - p. , 2018
Link:
https://doi.org/10.1038/..
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12
Assessment of a Silicon Quantum Dot Spin Qubit Environment ..:
Chan, K. W.
;
Huang, W.
;
Yang, C. H.
...
Physical Review Applied. 10 (2018) 4 - p. , 2018
Link:
https://doi.org/10.1103/..
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13
Interfacing spin qubits in quantum dots and donors—hot, den..:
Vandersypen, L. M. K.
;
Bluhm, H.
;
Clarke, J. S.
...
npj Quantum Information. 3 (2017) 1 - p. , 2017
Link:
https://doi.org/10.1038/..
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14
Silicon CMOS architecture for a spin-based quantum computer:
Veldhorst, M.
;
Eenink, H. G. J.
;
Yang, C. H.
.
Nature Communications. 8 (2017) 1 - p. , 2017
Link:
https://doi.org/10.1038/..
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15
Thermal-Error Regime in High-Accuracy Gigahertz Single-Elec..:
Zhao, R.
;
Rossi, A.
;
Giblin, S. P.
...
Physical Review Applied. 8 (2017) 4 - p. , 2017
Link:
https://doi.org/10.1103/..
1-15