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Ultracompact zigzag fiber-feedback multipass optical parametric oscillator.

Created on 01 Aug 2026

Authors

Johann Thannheimer, Florent Kadriu, Philipp Flad, Tobias Steinle, Harald Giessen

Published in

Optics letters. Volume 51. Issue 15. Pages 4368-4371. Aug 01, 2026.

Abstract

Fiber-feedback OPOs are widely used as broadly tunable ultrashort pulse sources, but their limited parametric single-pass gain at a broad bandwidth often necessitates post-amplification stages. Our recently developed multipass amplification allows us to break this gain-bandwidth limit. The novel, to the best of our knowledge, zigzag implementation presented in this Letter enables five dispersion-engineered passes through a single nonlinear crystal using only two nearby plane mirrors. This compact geometry combines high gain with high bandwidth and is integrated in a fiber-feedback cavity. The resulting zigzag fiber-feedback multipass OPO (FFMOPO) delivers up to 1.2 W of shot-noise-limited 100 fs pulses that are continuously tunable from 1360 nm to 1800 nm at a 76 MHz repetition rate and up to 40% system conversion efficiency. With only a few cubic centimeters in size, the ultracompact zigzag geometry can be seamlessly integrated into existing single-pass OPO designs, eliminating the need for post-amplification and reducing the size and cost of tunable pulse sources for ultrafast spectroscopy and bioimaging.

PMID:
42537190
Bibliographic data and abstract were imported from PubMed on 01 Aug 2026.

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