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Inductive measurement of optically hyperpolarized phosphorous donor nuclei in an isotopically-enriched silicon-28 crystal

Materials Science 2015-01-07 v6 Quantum Physics

Abstract

We experimentally demonstrate the inductive readout of optically hyperpolarized phosphorus-31 donor nuclear spins in an isotopically enriched silicon-28 crystal. The concentration of phosphorus donors in the crystal was 1.5 x 1015^{15} cm3^{-3}, three orders of magnitude lower than has previously been detected via direct inductive detection. The signal-to-noise ratio measured in a single free induction decay from a 1 cm3^3 sample (1015\approx 10^{15} spins) was 113. By transferring the sample to an X-band ESR spectrometer, we were able to obtain a lower bound for the nuclear spin polarization at 1.7 K of 64 %. The 31^{31}P-T2_{2} measured with a Hahn echo sequence was 420 ms at 1.7 K, which was extended to 1.2 s with a Carr Purcell cycle. The T1_1 of the 31^{31}P nuclear spins at 1.7 K is extremely long and could not be determined, as no decay was observed even on a timescale of 4.5 hours. Optical excitation was performed with a 1047 nm laser, which provided above bandgap excitation of the silicon. The build-up of the hyperpolarization at 4.2 K followed a single exponential with a characteristic time of 577 s, while the build-up at 1.7 K showed bi-exponential behavior with characteristic time constants of 578 s and 5670 s.

Keywords

Cite

@article{arxiv.1407.5352,
  title  = {Inductive measurement of optically hyperpolarized phosphorous donor nuclei in an isotopically-enriched silicon-28 crystal},
  author = {P. Gumann and O. Patange and C. Ramanathan and H. Haas and O. Moussa and M. L. W. Thewalt and H. Riemann and N. V. Abrosimov and P. Becker and H. -J. Pohl and K. M. Itoh and D. G. Cory},
  journal= {arXiv preprint arXiv:1407.5352},
  year   = {2015}
}

Comments

8 pages, 6 figures