4.8 Article

Fast coherent manipulation of three-electron states in a double quantum dot

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NATURE COMMUNICATIONS
卷 5, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms4020

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  1. ARO [W911NF-08-1-0482, W911NF-12-0607]
  2. NSF [PHY-1104660]
  3. United States Department of Defense
  4. Division Of Physics [1104660] Funding Source: National Science Foundation

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An important goal in the manipulation of quantum systems is the achievement of many coherent oscillations within the characteristic dephasing time T-2*. Most manipulations of electron spins in quantum dots have focused on the construction and control of two-state quantum systems, or qubits, in which each quantum dot is occupied by a single electron. Here we perform quantum manipulations on a system with three electrons per double quantum dot. We demonstrate that tailored pulse sequences can be used to induce coherent rotations between three-electron quantum states. Certain pulse sequences yield coherent oscillations fast enough that more than 100 oscillations are visible within a T-2* time. The minimum oscillation frequency we observe is faster than 5 GHz. The presence of the third electron enables very fast rotations to all possible states, in contrast to the case when only two electrons are used, in which some rotations are slow.

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