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Fibre lasers

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Solid-state lasers in which the gain medium is an active optical fibre - usually doped with rare earth elements (e.g. erbium, neodymium, ytterbium, thulium, etc.) - are named fibre lasers. With respect to other type of lasers, such lasers have the advantage to be able to output higher power, to have higher temperature and vibrational stability, and to present longer lifetimes; they also have the benefit of being more compact than other lasers (e.g. gas lasers) of comparable power. Such characteristics, coupled with their reduced cost, make them paramount in industrial and biomedical applications as well as for communications, and have driven the attention of the scientific community.

This Collection gathers original research in the topic of fibre lasers, spanning from the manufacturing and characterisation of a fibre laser system to its exploitation in exciting applications in engineering, biomedical, and natural science.

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cnc laser machinery for metal cutting. 3d image render. Concept of automation in heavy industry.

Editors

  • Shuqing Chen, PhD

    Institute of Microscale Optoelectronics, Shenzhen University, China

  • Bülend Ortaç, PhD

    Bilkent University, UNAM-Institute of Materials Science and Nanotechnology, National Nanotechnology Research Center, Turkey

  • Giuseppe Quero, PhD

    Bioscience and Territory Department, University of Molise, Italy

Collections articles undergo Scientific Reports' standard peer review process and are subject to all of the journal’s standard policies. This includes the journal’s policy on competing interests. The Guest Editors have no competing interests with the submissions which they handle through the peer review process. The peer review of any submissions for which the Guest Editors have competing interests is handled by another Editorial Board Member who has no competing interests. For more information, refer to our Collections guidelines.

 

This Collection has not been supported by sponsorship.