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BERTHOLD LEIBINGER STIFTUNG
The fascinating world of lasers
Berthold Leibinger Innovationspreis
Laureates 2010
Finalists 2010
Competition 2010
Laureates 2000 - 2008
Berthold Leibinger Zukunftspreis
2. Prize 2004

Laureate
Prof. Dr. Andreas Tünnermann, Dr. Stefan Nolte, Dr. Holger Zellmer,
Friedrich-Schiller-Universität / Fraunhofer-Institut für Angewandte Optik und Feinmechanik, both in Jena, Germany

Title of work:
High-Power Fiber Lasers and their Applications

Prof. Dr. Andreas Tünnermann
The high-power fiber laser is a step towards developing simple, compact and robust lasers with high beam quality. The properties of this laser model inspire developers and engineers to create new applications, from basic research over laser material processing to biophotonics.

Standard laser resonators consist of a variety of optical elements which generate, conduct and manipulate the laser light.

Fiber lasers, on the other hand, consist of only one special glass fiber, which can accomplish all the important tasks: it generates and conducts the laser light. The principle is very simple: as the energy source for the laser light, pump light is coupled into one end into a special fiber. The laser beam exits at the other end.

The advantages of the fiber laser are readily apparent. Having a length of several meters, the fiber affords efficient and uniform cooling; due to the narrow light conduction, the result is excellent beam quality. However, the first fiber lasers introduced in the 1960s had a starting output of only a few milliwatts. Fiber amplifiers in communication networks in the 1990s were their first important application. They amplified the light signals within the fiber glass cables. Only with the appearance of recent advances in fiber and waveguide optics are the outputs in generating light in fibers no longer limited to low power.
 

On these grounds, Professor Dr. Andreas Tünnermann, Dr. Stefan Nolte and Dr. Holger Zellmer have developed innovative fiber laser designs. They were able to generate both high continual outputs as well as ultrashort pulses.
For the functionality of glass fiber as a laser medium, its very special design is important.
As simple as the setup of the fiber laser is, the composition of the fiber itself is complex. These three scientists have performed important, pioneering work in this field.

Professor Dr. Andreas Tünnermann, Dr. Stefan Nolte and Dr. Holger Zellmer began their research and development of the fiber laser at the Laser Zentrum Hannover, Germany. Today, they are continuing their work at Friedrich Schiller University and the Fraunhofer Institute for Applied Optics and Precision Engineering, both in Jena, Germany. They are awarded second prize for high-power fiber lasers and their applications.


Here, you can obtain the brochure with information on the laureates and the nominees from 2004.

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