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Versatile monolithic 2-micron laser systems

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  • Versatile monolithic 2-micron laser systems
M. Wysmolek, M. Steinke, J. Neumann, D. Kracht
Versatile monolithic 2-micron laser systems
SPIE Proceedings Vol. 10512: Fiber Lasers XV: Technology and Systems , 1051224 (Gespeichert)
Publication type: Journal Article (non-reviewed)
DOI: 10.1117/12.2289881

Abstract

To answer a growing demand in development of high power pulsed and continuous wave sources at 2 micron spectral range we have participated in several projects, which resulted in a delivery of versatile monolithic sources providing picosecond, nanosecond and CW laser signal. As an example of pulsed sources we developed all-fiber monolithic devices based on a directly modulated laser diode and gain-switched laser diode to generate nanosecond and picosecond pulses, respectively, which are amplified in the same fiber amplifier chain up to 50 µJ with 96 ps and more than 1 mJ with pulses longer than 35 ns.© (2018) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.

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  • ABOUT US
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    • Compliance and anti-corruption policy
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  • DEPARTMENTS
    • Optical Components
      • Photonic Materials Group
      • Smart Optical Devices Group
      • Optical Coatings Group
      • Optics Integration Group
    • Laser Development
      • Fiber Optics Group
      • Optical Systems Group
      • Solid-State Lasers Group
      • Ultrafast Photonics Group
    • Industrial and Biomedical Optics
      • 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
      • Consulting & development
      • Characterization
    • Consulting
      • Consulting
      • Feasibility studies
      • Laser and occupational safety
  • PUBLICATIONS
    • Press Releases
    • News
    • LZH News Subscription
    • Dissertations
    • Scientific Publications
    • LZH Videos
    • Laser Safety Database
  • JOBS & EDUCATION
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    • Internships, student papers and theses

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