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30 W ultra-stable laser light at 2128 nm for future gravitational-wave observatories

Optics 2023-11-30 v1 Instrumentation and Methods for Astrophysics Quantum Physics

Abstract

Thermal noise of the dielectric mirror coatings can limit laser-optical high-precision measurements. Coatings made of amorphous silicon and silicon nitride could provide a remedy for both gravitational-wave detectors and optical clocks. However, the absorption spectra of these materials require laser wavelengths around 2 μ\mum. For GW detectors, ultra-stable laser light of tens or hundreds of watts is needed. Here, we report the production of nearly 30 W of ultra-stable laser light at 2128 nm by frequency conversion of 1064 nm light from a master oscillator power amplifier system. We achieve an external conversion efficiency of (67.5 ±\pm 0.5) % via optical parametric oscillation and a relative power noise in the range of 10610^{-6}/Hz\sqrt{\text{Hz}} at 100 Hz, which is almost as low as that of the input light and underlines the potential of our approach.

Keywords

Cite

@article{arxiv.2311.17214,
  title  = {30 W ultra-stable laser light at 2128 nm for future gravitational-wave observatories},
  author = {Julian Gurs and Nina Bode and Christian Darsow-Fromm and Henning Vahlbruch and Pascal Gewecke and Sebastian Steinlechner and Benno Willke and Roman Schnabel},
  journal= {arXiv preprint arXiv:2311.17214},
  year   = {2023}
}

Comments

4 pages, 3 figures, LIGO Document P2300369