Injection-seeded high-power Yb:YAG thin-disk laser stabilized by the Pound-Drever-Hall method
Abstract
We demonstrate an injection-seeded thin-disk Yb:YAG laser at 1030 nm, stabilized by the Pound-Drever-Hall (PDH) method. We modified the PDH scheme to obtain an error signal free from Trojan locking points, which allowed robust re-locking of the laser and reliable long-term operation. The single-frequency pulses have 50 mJ energy (limited to avoid laser-induced damage) with a beam quality of M² < 1.1 and an adjustable length of 55-110 ns. Heterodyne measurements confirmed a spectral linewidth of 3.7 MHz. The short pulse build-up time (850 ns) makes this laser suitable for laser spectroscopy of muonic hydrogen, pursued by the CREMA collaboration. Show more
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publishedExternal links
Journal / series
Optics ExpressVolume
Pages / Article No.
Publisher
OpticaFunding
197052 - Hyperfine splitting in muonic hydrogen: Lasers and the protons magnetic structure (SNF)
165854 - Hyperfine splitting in muonic hydrogen and 3He and thin-disk laser development (SNF)
725039 - Hyperfine splittings in muonic atoms and laser technology (EC)
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