Narrow-linewidth, piezoelectrically tunable photonic integrated blue laser
Anat Siddharth, Asger B. Gardner, Xinru Ji, Shivaprasad U. Hulyal, Mikael S. Reichler, Alaina Attanasio, Johann Riemensberger, Sunil A. Bhave, Nicolas Volet, Simone Bianconi, Tobias J. Kippenberg

TL;DR
This paper demonstrates a novel, integrated blue laser at 461 nm with low phase noise and high-speed, linear frequency tuning, enabling advanced applications in underwater communication and quantum technologies.
Contribution
First integrated blue laser at 461 nm combining low noise, high-speed tuning, and monolithic integration on a silicon nitride platform.
Findings
Laser linewidth below 30 kHz
Over 1 mW output power
900 MHz mode-hop-free tuning
Abstract
Frequency-agile lasers operating in the ultraviolet-to-blue spectral range (360-480 nm) are critical enablers for a wide range of technologies, including free-space and underwater optical communications, optical atomic clocks, and Rydberg-atom-based quantum computing platforms. Integrated photonic lasers offer a compelling platform for these applications by combining low-noise performance with fast frequency tuning in a compact, robust form factor through monolithic integration. However, realizing such lasers in the blue spectral range remains challenging due to limitations in current semiconductor materials and photonic integration techniques. Here, we report the first demonstration of a photonic integrated blue laser at around 461 nm, which simultaneously achieves frequency agility and low phase noise. This implementation is based on the hybrid integration of a gallium nitride-based…
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Taxonomy
TopicsAdvanced Fiber Laser Technologies · Photonic and Optical Devices · Neural Networks and Reservoir Computing
