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Miniaturizing a coherent beam combining system into a compact laser diode module
This study introduces a compact laser module for coherent beam combination, achieving 5W output power with 85% efficiency. Automated phase stabilization ensures consistent performance in a small device.
Area of Science:
- Optics and Photonics
- Laser Technology
- Semiconductor Lasers
Background:
- Coherent beam combination is crucial for high-power laser systems.
- Miniaturization of laser modules presents significant engineering challenges.
- Previous compact devices lacked efficient beam combination capabilities.
Purpose of the Study:
- To develop a compact laser module capable of coherent beam combination.
- To achieve high output power and efficiency in a miniaturized laser system.
- To automate the phase stabilization process for reliable operation.
Main Methods:
- Utilizing two tapered amplifiers seeded by a distributed Bragg reflector ridge waveguide laser diode at 761 nm.
- Implementing a single longitudinal mode operation.
- Employing automated phase control via current modulation and a reverse hill-climbing algorithm with an ATmega328P microcontroller.
Main Results:
- Demonstrated a compact laser module (76×43×15 mm³) for coherent beam combination.
- Achieved up to 5W continuous wave output power.
- Reached a beam combination efficiency of 85%.
Conclusions:
- The developed laser module represents a novel, compact solution for coherent beam combination.
- The automated phase stabilization system ensures stable and efficient operation.
- This technology has potential applications in various fields requiring high-power, compact laser sources.
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