Chopped nonlinear magneto-optic rotation: a technique for precision measurements
Abstract
We have developed a technique for precise measurement of small magnetic fields using nonlinear magneto-optic rotation (NMOR). The technique relies on the resonant laser beam being chopped. During the on time, the atoms are optically pumped into an aligned ground state ( coherence). During the off time, they freely precess around the magnetic field at the Larmor frequency. If the on-off modulation frequency matches (twice) the Larmor precession frequency, the rotation is resonantly enhanced in every cycle, thereby making the process like a repeated Ramsey measurement of the Larmor frequency. We study chopped-NMOR in a paraffin-coated Cs vapor cell. The out-of-phase demodulated rotation shows a Lorentzian peak of linewidth 85 G, corresponding to a sensitivity of 0.15 nG/. We discuss the potential of this technique for the measurement of an atomic electric-dipole moment.
Cite
@article{arxiv.1103.1192,
title = {Chopped nonlinear magneto-optic rotation: a technique for precision measurements},
author = {Harish Ravishankar and Sapam Ranjita Chanu and Vasant Natarajan},
journal= {arXiv preprint arXiv:1103.1192},
year = {2012}
}
Comments
4 pages, 4 figures