4.8 Article

Ultrafast optical spin echo in a single quantum dot

期刊

NATURE PHOTONICS
卷 4, 期 6, 页码 367-370

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/NPHOTON.2010.83

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资金

  1. National Institute of Information and Communications Technology (NICT Japan)
  2. Ministry of Education, Culture, Sports, Science and Technology (MEXT Japan)
  3. National Science Foundation [CCF0829694]
  4. National Institute of Standards and Technology [60NANB9D9170]
  5. Special Coordination Funds for Promoting Science and Technology
  6. State of Bavaria
  7. David Cheriton Stanford Graduate Fellowship
  8. Grants-in-Aid for Scientific Research [18001002] Funding Source: KAKEN
  9. Division of Computing and Communication Foundations
  10. Direct For Computer & Info Scie & Enginr [0829694] Funding Source: National Science Foundation

向作者/读者索取更多资源

Many proposed photonic quantum networks rely on matter qubits to serve as memory elements(1,2). The spin of a single electron confined in a semiconductor quantum dot forms a promising matter qubit that may be interfaced with a photonic network(3). Ultrafast optical spin control allows gate operations to be performed on the spin within a picosecond timescale(4-14), orders of magnitude faster than microwave or electrical control(15,16). One obstacle to storing quantum information in a single quantum dot spin is the apparent nanosecond-timescale dephasing due to slow variations in the background nuclear magnetic field(15-17). Here we use an ultrafast, all-optical spin echo technique to increase the decoherence time of a single quantum dot electron spin from nanoseconds to several microseconds. The ratio of decoherence time to gate time exceeds 10(5), suggesting strong promise for future photonic quantum information processors(18) and repeater networks(1,2).

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