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Laser Zentrum Hannover e.V.
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All-fiber linearly polarized high power 2-µm single mode Tm-fiber laser for plastic processing and Ho-laser pumping applications

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  • All-fiber linearly polarized high power 2-µm single mode Tm-fiber laser for plastic processing and Ho-laser pumping applications
K. Scholle, M. Schäfer, S. Lamrini, M. Wysmolek, M. Steinke, J. Neumann, P. Fuhrberg
All-fiber linearly polarized high power 2-µm single mode Tm-fiber laser for plastic processing and Ho-laser pumping applications
SPIE Proceedings Vol. 10512: Fiber Lasers XV: Technology and Systems , 105120O (2018)
Publication type: Journal Article (non-reviewed)
DOI: 10.1117/12.2289957

Abstract

In this paper we present a high power, polarized 2 µm Thulium-doped fiber laser with high beam quality. Such laser systems are ideally suited for the processing of plastic materials which are highly transparent in the visible and 1 µm wavelength range and for the pumping of laser sources for the mid-IR wavelength region. For most applications polarized lasers are beneficial, as they can be easily protected from back reflections and combined with other laser sources or power scaled by polarization combining. The Tm-doped fiber laser is pumped in an all-fiber configuration by using a fiber coupled pump diode emitting around 790 nm. This pumping scheme allows the exploitation of the crossrelaxation process to populate the upper laser level. A compact and robust laser configuration was achieved by using an all-fiber configuration with single mode fibers and fiber Bragg gratings (FBG). Different FBG pairs with wavelength around 2 µm were tested. To achieve stable polarized output power the fibers with the FBG were 90° twisted at the splices. Stable linearly polarized output power up to 38 W with an extinction ratio of up to 50:1 was observed. With respect to the diode output power an optical-to-optical efficiency of 51 % was reached with a correspondent slope efficiency of 52 %. The emission linewidth at maximum power was measured to be < 0.3 nm which is well suitable for Ho-laser pumping. First tests of the precise processing of highly transparent plastic materials demonstrate the potentials of these laser systems.

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      • Ultrafast Photonics Group
    • Industrial and Biomedical Optics
      • Imaging and Metrology Group
      • Biophotonics Group
      • Food and Farming Group
    • Production and Systems
      • Additive Manufacturing – Polymers and Multi-Materials Group
      • Glass Group
      • Composites Group
      • Laser Micromachining Group
    • Materials and Processes
      • Additive Manufacturing - Metals Group
      • Joining and Cutting of Metals Group
      • Machines and Controls Group
      • Underwater Technology Group
      • Safety Technology Group
    • Services
  • BUSINESS AREAS
    • Additive Manufacturing
    • Medical Technology
    • Space Technology
  • SERVICES
    • Manufacturing processes and materials processing
      • Laser processing of composite materials
      • Laser processing of metals
      • Additive Manufacturing
      • Laser-based glass processing
      • Laser processing of organic materials
    • Optical components
      • Coating and thin-film technology
      • Characterization
    • Analysis techniques
      • Sample preparation
      • Analysis methods
    • Laser development
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