Coherent Manipulation of Coupled Electron Spins in Semiconductor Quantum Dots
Harvard University · University of California, Santa Barbara · +1 more institution
Abstract
We demonstrated coherent control of a quantum two-level system based on two-electron spin states in a double quantum dot, allowing state preparation, coherent manipulation, and projective readout. These techniques are based on rapid electrical control of the exchange interaction. Separating and later recombining a singlet spin state provided a measurement of the spin dephasing time, T2*, of approximately 10 nanoseconds, limited by hyperfine interactions with the gallium arsenide host nuclei. Rabi oscillations of two-electron spin states were demonstrated, and spin-echo pulse sequences were used to suppress hyperfine-induced dephasing. Using these quantum control techniques, a coherence time for two-electron…
Citation impact
- FWCI
- 139.77
- Percentile
- 100%
- References
- 28
Authors
9- JRJ. R. PettaCorresponding
Harvard University, University of California, Santa Barbara, Weizmann Institute of Science
- ACA. C. Johnson
Harvard University, University of California, Santa Barbara, Weizmann Institute of Science
- JMJacob M. Taylor
Harvard University, University of California, Santa Barbara, Weizmann Institute of Science
- EAE. A. Laird
Harvard University, University of California, Santa Barbara, Weizmann Institute of Science
- AYAmir Yacoby
Harvard University, University of California, Santa Barbara, Weizmann Institute of Science
Topics & keywords
- Dephasing
- Hyperfine structure
- Physics
- Rabi cycle
- Quantum dot
- Spin (aerodynamics)
- Spins
- Microsecond