Petta J R, Johnson A C, Taylor J M, Laird E A, Yacoby A, Lukin M D, Marcus C M, Hanson M P, Gossard A C
Department of Physics, Harvard University, Cambridge, MA 02138, USA.
Science. 2005 Sep 30;309(5744):2180-4. doi: 10.1126/science.1116955. Epub 2005 Sep 1.
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 spin states exceeding 1 microsecond was observed.
我们展示了基于双量子点中双电子自旋态的量子二能级系统的相干控制,实现了态制备、相干操纵和投影读出。这些技术基于对交换相互作用的快速电控制。分离并随后重新组合单重态自旋态,测量得到自旋退相干时间T2*约为10纳秒,这受到与砷化镓主体核的超精细相互作用的限制。展示了双电子自旋态的拉比振荡,并使用自旋回波脉冲序列来抑制超精细诱导的退相干。利用这些量子控制技术,观察到双电子自旋态的相干时间超过1微秒。