English

All-optical initialization, readout, and coherent preparation of single silicon-vacancy spins in diamond

Quantum Physics 2014-12-31 v1 Materials Science Optics

Abstract

The silicon-vacancy (SiV\mathrm{SiV}^-) color center in diamond has attracted attention due to its unique optical properties. It exhibits spectral stability and indistinguishability that facilitate efficient generation of photons capable of demonstrating quantum interference. Here we show high fidelity optical initialization and readout of electronic spin in a single SiV\mathrm{SiV}^- center with a spin relaxation time of T1=2.4±0.2T_1=2.4\pm0.2 ms. Coherent population trapping (CPT) is used to demonstrate coherent preparation of dark superposition states with a spin coherence time of T2=35±3T_2^\star=35\pm3 ns. This is fundamentally limited by orbital relaxation, and an understanding of this process opens the way to extend coherences by engineering interactions with phonons. These results establish the SiV\mathrm{SiV}^- center as a solid-state spin-photon interface.

Keywords

Cite

@article{arxiv.1410.1355,
  title  = {All-optical initialization, readout, and coherent preparation of single silicon-vacancy spins in diamond},
  author = {Lachlan J. Rogers and Kay D. Jahnke and Mathias H. Metsch and Alp Sipahigil and Jan M. Binder and Tokuyuki Teraji and Hitoshi Sumiya and Junichi Isoya and Mikhail D. Lukin and Philip Hemmer and Fedor Jelezko},
  journal= {arXiv preprint arXiv:1410.1355},
  year   = {2014}
}

Comments

9 pages, 8 figures