English

Absolute frequency references at 1529 nm and 1560 nm using modulation transfer spectroscopy

Atomic Physics 2015-09-23 v1

Abstract

We demonstrate a double optical frequency reference (1529 nm and 1560 nm) for the telecom C-band using 87^{87}Rb modulation transfer spectroscopy. The two reference frequencies are defined by the 5S1/2F=2_{1/2} F=2 \rightarrow 5P3/2F=3_{3/2} F'=3 two-level and 5S1/2F=2_{1/2} F=2 \rightarrow 5P3/2F=3_{3/2} F'=3 \rightarrow 4D5/2F"=4_{5/2} F"=4 ladder transitions. We examine the sensitivity of the frequency stabilization to probe power and magnetic field fluctuations, calculate its frequency shift due to residual amplitude modulation, and estimate its shift due to gas collisions. The short-term Allan deviation was estimated from the error signal slope for the two transitions. Our scheme provides a simple and high performing system for references at these important wavelengths. We estimate an absolute accuracy of \sim 1 kHz is realistic.

Keywords

Cite

@article{arxiv.1509.06485,
  title  = {Absolute frequency references at 1529 nm and 1560 nm using modulation transfer spectroscopy},
  author = {Y. Natali Martinez de Escobar and Silvana Palacios Álvarez and Simon Coop and Thomas Vanderbruggen and Krzysztof T. Kaczmarek and Morgan W. Mitchell},
  journal= {arXiv preprint arXiv:1509.06485},
  year   = {2015}
}

Comments

5 pages, 4 figures