Visible light photonic integrated Brillouin laser
Nitesh Chauhan, Andrei Isichenko, Kaikai Liu, Jiawei Wang, Qiancheng, Zhao, Ryan O. Behunin, Peter T. Rakich, Andrew M. Jayich, C. Fertig, C. W., Hoyt, Daniel J. Blumenthal

TL;DR
This paper reports the first demonstration of a visible light photonic integrated Brillouin laser operating at 674 nm, achieving narrow linewidth, high efficiency, and wavelength flexibility, enabling compact and stable sources for atomic and quantum applications.
Contribution
The authors demonstrate the first integrated visible light Brillouin laser using silicon nitride waveguides, overcoming previous barriers and enabling on-chip narrow linewidth visible lasers.
Findings
Operates at 674 nm with 14.7 mW threshold
Linewidth narrowed to 269 Hz with pump increase
Lasing demonstrated at 698 nm for strontium clock transition
Abstract
Narrow linewidth visible light lasers are critical for atomic, molecular and optical (AMO) applications including atomic clocks, quantum computing, atomic and molecular spectroscopy, and sensing. Historically, such lasers are implemented at the tabletop scale, using semiconductor lasers stabilized to large optical reference cavities. Photonic integration of high spectral-purity visible light sources will enable experiments to increase in complexity and scale. Stimulated Brillouin scattering (SBS) is a promising approach to realize highly coherent on-chip visible light laser emission. While progress has been made on integrated SBS lasers at telecommunications wavelengths, barriers have existed to translate this performance to the visible, namely the realization of Brillouin-active waveguides in ultra-low optical loss photonics. We have overcome this barrier, demonstrating the first…
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