Hodges, J.Yao, NormanMaclaurin, DougalRastogi, C.Lukin, MikhailEnglund, D.2017-03-162013Hodges, J., N. Yao, D. Maclaurin, C. Rastogi, M. Lukin, and D. Englund. 2013. “Timekeeping with Electron Spin States in Diamond.” Physical Review A 87 (3) (March).1050-2947http://nrs.harvard.edu/urn-3:HUL.InstRepos:30782186Frequency standards based on atomic states, such as Rb or Cs vapors, or single-trapped ions, are the most precise measures of time. Here we propose and analyze a precision oscillator approach based upon spins in a solid-state system, in particular, the nitrogen-vacancy defect in single-crystal diamond. We show that this system can have stability approaching portable atomic standards and is readily incorporable as a chip-scale device. Using a pulsed spin-echo technique, we anticipate an Allan deviation of σy=10−7τ−1/2 limited by thermally-induced strain variations; in the absence of such thermal fluctuations, the system is limited by spin dephasing and harbors an Allan deviation nearing ∼10−12τ−1/2. Potential improvements based upon advanced diamond material processing, temperature stabilization, and nanophotonic engineering are discussed.en-USTimekeeping with electron spin states in diamondJournal Article2017-03-1610.1103/PhysRevA.87.032118