English

Laser stabilization to a cryogenic fiber ring resonator

Optics 2021-01-22 v1 Atomic Physics Instrumentation and Detectors Quantum Physics

Abstract

The frequency stability of lasers is limited by thermal noise in state-of-the-art frequency references. Further improvement requires operation at cryogenic temperature. In this context, we investigate a fiber-based ring resonator. Our system exhibits a first-order temperature-insensitive point around 3.553.55 K, much lower than that of crystalline silicon. The observed low sensitivity with respect to vibrations (<51011m1s2<5\cdot{10^{-11}}\,\text{m}^{-1} \text{s}^{2}), temperature (22(1)109K2-22(1)\cdot{10^{-9}}\,\text{K}^{-2}) and pressure changes (4.2(2)1011mbar24.2(2)\cdot{10^{-11}}\,\text{mbar}^{-2}) makes our approach promising for future precision experiments.

Keywords

Cite

@article{arxiv.2012.08898,
  title  = {Laser stabilization to a cryogenic fiber ring resonator},
  author = {Benjamin Merkel and Daniel Repp and Andreas Reiserer},
  journal= {arXiv preprint arXiv:2012.08898},
  year   = {2021}
}
R2 v1 2026-06-23T21:00:49.587Z