English

3D optical manipulation of a single electron spin

Optics 2013-05-20 v3 Mesoscale and Nanoscale Physics Quantum Physics

Abstract

Nitrogen vacancy (NV) centers in diamond are promising elemental blocks for quantum optics [1, 2], spin-based quantum information processing [3, 4], and high-resolution sensing [5-13]. Yet, fully exploiting these capabilities of single NV centers requires strategies to accurately manipulate them. Here, we use optical tweezers as a tool to achieve deterministic trapping and 3D spatial manipulation of individual nano-diamonds hosting a single NV spin. Remarkably, we find the NV axis is nearly fixed inside the trap and can be controlled in-situ, by adjusting the polarization of the trapping light. By combining this unique spatial and angular control with coherent manipulation of the NV spin and fluorescent lifetime measurements near an integrated photonic system, we prove optically trapped NV center as a novel route for both 3D vectorial magnetometry and sensing of the local density of optical states.

Keywords

Cite

@article{arxiv.1207.0650,
  title  = {3D optical manipulation of a single electron spin},
  author = {Michael Geiselmann and Mathieu Juan and Jan Renger and Jana M. Say and Louise J. Brown and F. Javier García de Abajo and Frank Koppens and Romain Quidant},
  journal= {arXiv preprint arXiv:1207.0650},
  year   = {2013}
}
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