All-Fiber-Based Adaptive Spatial Mode Control

An electro-optic beam controller, material processing apparatus, or optical amplifier, and corresponding methods, can include an actively controlled, waveguide-based, optical spatial mode conversion device. The conversion device can include a coupler, which can be a photonic lantern, configured to combine light beams into a common light beam; a sensor configured to measure at least one characteristic of the common light beam; and a controller configured to modulate optical parameters of the individual, respective light beams to set one or more spatial modes of the common light beam. Actively controlled and modulated devices can be used to maintain a stable, diffraction-limited beam for use in an amplification, communications, imaging, laser radar, switching, or laser material processing system. Embodiments can also be used to maintain a fundamental or other spatial mode in an optical fiber even while scaling to kilowatt power.

Researchers

Juan Montoya / Dale Martz / Peter Reeves-Hall / Christopher Aleshire / Daniel Ripin

Departments: Lincoln Laboratory
Technology Areas: Communication Systems: Optical / Electronics & Photonics: Photonics
Impact Areas: Connected World

  • electro-optic beam controller and method
    United States of America | Granted | 10,901,240

License this technology

Interested in this technology? Connect with our experienced licensing team to initiate the process.

Sign up for technology updates

Sign up now to receive the latest updates on cutting-edge technologies and innovations.

More Technologies