arXiv · 2409.05756
Chip-integrated extended-cavity mode-locked laser in the visible
Abstract
Mode-locked lasers are of interest for applications such as biological imaging, non-linear frequency conversion, and single-photon generation. In the infrared, chip-integrated mode-locked lasers have been demonstrated through integration of laser diodes with low-loss photonic circuits. However additional challenges, such as a higher propagation loss and smaller alignment tolerances have prevented the realization of such lasers in the visible range. Here, we demonstrate the first chip-integrated mode-locked diode laser in the visible using an integrated photonic circuit for cavity extension. Based on a gallium arsenide gain chip and a low-loss silicon nitride feedback circuit, the laser is passively mode-locked using a saturable absorber implemented by focused ion beam milling. At a center wavelength of 642 nm, the laser shows an average output power of 3.4 mW, with a spectral bandwidth of 1.5 nm at a repetition rate of 7.84 GHz.
Explore related subjects
Keep this discovery
Lisa V. Winkler, Govert Neijts, Hubertus J. M. Bastiaens, Melissa J. Goodwin, Albert van Rees, Philip P. J. Schrinner, Marcel Hoekman, Ronald Dekker, Adriano R. do Nascimento Jr., Peter J. M. van der Slot, Christian Nölleke, Klaus-J. Boller. 2024-09-09. Chip-integrated extended-cavity mode-locked laser in the visible. https://doi.org/10.1364/ol.540675
Cite the original work for its findings. Save a collection to share your selection of sources.