Atomic Faraday filter with equivalent noise bandwidth less than 1 GHz
Atomic Physics
2015-05-11 v1 Optics
Abstract
We demonstrate an atomic bandpass optical filter with an equivalent noise bandwidth less than 1 GHz using the D line in a cesium vapor. We use the ElecSus computer program to find optimal experimental parameters, and find that for important quantities the cesium D line clearly outperforms other alkali metals on either D-lines. The filter simultaneously achieves a peak transmission of 77%, a passband of 310 MHz and an equivalent noise bandwidth of 0.96 GHz, for a magnetic field of 45.3 gauss and a temperature of 68.0C. Experimentally, the prediction from the model is verified. The experiment and theoretical predictions show excellent agreement.
Cite
@article{arxiv.1502.07187,
title = {Atomic Faraday filter with equivalent noise bandwidth less than 1 GHz},
author = {Mark A. Zentile and Daniel J. Whiting and James Keaveney and Charles S. Adams and Ifan G Hughes},
journal= {arXiv preprint arXiv:1502.07187},
year = {2015}
}
Comments
4 pages, 3 figures