Fianium leads consortium to develop next-generation fiber lasers

Jan. 11, 2007
January 11, 2007, Southampton, England--A consortium led by fiber laser manufacturer Fianium received a $2.7 million dollar award from the U.K. Department of Trade and Industry to develop next-generation fiber lasers for industrial and imaging applications. The project includes Lairdside Laser Engineering Centre (LLEC) at the University of Liverpool and the Centre for Photonics and Photonic Materials (CPPM) of the University of Bath.

January 11, 2007, Southampton, England--A consortium led by fiber laser manufacturer Fianium received a $2.7 million dollar award from the U.K. Department of Trade and Industry to develop next-generation fiber lasers for industrial and imaging applications. The project includes Lairdside Laser Engineering Centre (LLEC) at the University of Liverpool and the Centre for Photonics and Photonic Materials (CPPM) of the University of Bath.

The LLEC will take delivery of a new picosecond fiber laser system from Fianium in January 2007 for materials processing characterization trials as part of the ULTRAFAST project. The laser is a member of the FemtoPower series operating at a wavelength of 1064nm with a maximum pulse energy of 4 ìJ. The laser has a built-in pulse picker that allows an end user to step-wise change the laser repetition rate from 20 MHz to <1 MHz. The CPPM will develop new types of photonic crystal fibers tailored for use within ultrafast fiber lasers to enable the delivery of femtosecond pulses with high peak powers.

John Clowes, VP of Research and Development at Fianium and project coordinator, is pleased with the potential outputs of the project: "This award is a clear recognition of our achievements at the forefront of fibre laser technology. The collaboration with Lairdside and Bath University will be a great benefit in developing revolutionary new fibre lasers for materials processing and imaging applications."

For more information, visit www.fianium.com.

Sponsored Recommendations

Brain Computer Interface (BCI) electrode manufacturing

Jan. 31, 2025
Learn how an industry-leading Brain Computer Interface Electrode (BCI) manufacturer used precision laser micromachining to produce high-density neural microelectrode arrays.

Electro-Optic Sensor and System Performance Verification with Motion Systems

Jan. 31, 2025
To learn how to use motion control equipment for electro-optic sensor testing, click here to read our whitepaper!

How nanopositioning helped achieve fusion ignition

Jan. 31, 2025
In December 2022, the Lawrence Livermore National Laboratory's National Ignition Facility (NIF) achieved fusion ignition. Learn how Aerotech nanopositioning contributed to this...

Nanometer Scale Industrial Automation for Optical Device Manufacturing

Jan. 31, 2025
In optical device manufacturing, choosing automation technologies at the R&D level that are also suitable for production environments is critical to bringing new devices to market...

Voice your opinion!

To join the conversation, and become an exclusive member of Laser Focus World, create an account today!