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High-power, frequency-doubled Nd:GdVO4 laser for use in lithium cold atom experiments
Optics Express
|December 28, 2019
Summary
This study presents a high-power Nd:GdVO4 ring laser, achieving record single-longitudinal-mode output for laser cooling of lithium atoms. The laser also provides tunable blue-detuned light for advanced atomic physics experiments.
Area of Science:
- Atomic, Molecular, and Optical Physics
- Laser Physics and Photonics
Background:
- Neodymium-doped Gadolinium Vanadate (Nd:GdVO4) lasers are valuable for various applications.
- Efficient laser sources are crucial for precise control and manipulation of cold atoms.
Purpose of the Study:
- To develop a high-power, single-longitudinal-mode Nd:GdVO4 ring laser.
- To generate specific wavelengths for lithium cold atom experiments, including resonant and blue-detuned light.
Main Methods:
- Utilized an 888 nm-pumped Nd:GdVO4 ring laser configuration.
- Employed a commercial frequency-doubling cavity to generate second-harmonic wavelengths.
- Characterized laser output power and beam quality (M^2).
Main Results:
- Achieved a maximum output power of 7.4 W at 1341.2 nm with excellent beam quality (M^2<1.1).
- Reported the highest single-longitudinal-mode power for a Nd:GdVO4 crystal laser to date.
- Generated 1.2 W at 671.0 nm and 4.0 W at 670.6 nm using frequency doubling.
Conclusions:
- The developed Nd:GdVO4 laser system offers ample power for laser cooling of lithium atoms.
- The generated wavelengths are suitable for experiments requiring precise detuning from lithium D-lines.
- This laser source advances capabilities in cold atom research and related quantum technologies.

