Laser wavelength locking and stabilization

Selected publications demonstrating wavelength locking, linewidth narrowing, and stable laser operation using OptiGrate volume Bragg grating technologies.

# Publication Journal, Volume and Pages Application Summary Article
1 Chen et al., “A Narrow Linewidth Continuous Wave Tm:YLF Laser with a Volume Bragg Grating” Integrated Ferroelectrics, Vol. 209, No. 1, pp. 144-149 (2020) VBG was used for stabilization of a Tm:YLF laser at 1908.1 nm, achieving 15.5 W output power with narrow linewidth and excellent wavelength stability. Article
2 Tawy et al., “Volume Bragg Grating Locked Alexandrite Laser” Optics, Vol. 3, No. 1, pp. 53-59 (2022) Frequency locking of an Alexandrite laser at 762.2 nm, delivering diffraction-limited beam quality and an approximately 2.5 GHz linewidth. Article
3 Lagatsky et al., “Ultra-Compact Diode-Pumped Single-Frequency Ti:Sapphire Laser” Optics Letters, Vol. 47, No. 12, pp. 2995-2998 (2022) A volume Bragg grating output coupler enabled single-frequency Ti:Sapphire laser operation and reduced linewidth from 2.4 MHz to approximately 180 kHz. Article
4 Leconte et al., “Extended Tunability of Nd-Doped Fiber Lasers Operating at 872-936 nm” Optics Letters, Vol. 40, No. 17, pp. 4098-4101 (2015) VBG provided wavelength-selective feedback for tunable Nd-doped fiber lasers with up to 22 W output power and narrow linewidth. Article
5 Seger et al., “Intra-Cavity Frequency-Doubled Yb:KYW Laser Using Periodically Poled Rb-Doped KTP with a Volume Bragg Grating Input Coupler” Applied Physics B, Vol. 115, pp. 161-166 (2014) VBG enabled wavelength-selective stabilization of an intracavity frequency-doubled Yb:KYW laser system. Article