High power ultrafast phase-locked laser at 2060 nm from a doubly resonant optical parametric oscillator

H Han Rao R Robin Mevert F Fridolin Jakob Geesmann D David Zuber A Ayhan Demircan I Ihar Babushkin U Uwe Morgner

Abstract

Abstract A high-power 2- $$\mu$$ m phase-locked femtosecond source is demonstrated by a degenerate doubly resonant optical parametric oscillator (DROPO), which is synchronously pumped by a home-built Yb:YAG Kerr-lens mode-locked thin-disk laser. A dither-free scheme, incorporating an intracavity ’parasitic’ sum-frequency of signal and pump as an error signal, has been used to stabilize the DROPO at degeneracy. To our knowledge, with a pump power of 15.8 W, this system achieves the highest output power (5.6 W) and conversion efficiency (35 %) for an actively stabilized, degenerate BBO-based DROPO operating at 2  $$\mu$$ m. The long-term stability measurement of the power over 90 minutes shows a root mean square (RMS) power noise of 0.78%, demonstrating excellent stability and reliable performance.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 18, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (7)

H

Han Rao

R

Robin Mevert

F

Fridolin Jakob Geesmann

D

David Zuber

A

Ayhan Demircan

I

Ihar Babushkin

U

Uwe Morgner