• Medientyp: E-Artikel; Sonstige Veröffentlichung
  • Titel: Prevention of laser damage precursors in spaceborne ultraviolet antireflection coatings
  • Beteiligte: Alig, Thimotheus [VerfasserIn]; Bartels, Nils [VerfasserIn]; Allenspacher, Paul [VerfasserIn]; Balasa, Istvan [VerfasserIn]; Böntgen, Tammo [VerfasserIn]; Ristau, Detlev [VerfasserIn]; Jensen, Lars [VerfasserIn]
  • Erschienen: Washington, DC : Optica, 2021
  • Erschienen in: Optics Express (OpEx) 29 (2021), Nr. 10 ; Optics Express (OpEx)
  • Ausgabe: published Version
  • Sprache: Englisch
  • DOI: https://doi.org/10.15488/15064; https://doi.org/10.1364/oe.418368
  • Schlagwörter: Antireflection coatings ; Optical radar ; Ion beams ; Ion bombardment ; Ion sources
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  • Beschreibung: In order to enhance the reliability and performance of space-based Lidar systems, it is desirable to increase the damage resistance of ultraviolet antireflective coatings. For laser pulses with nanosecond pulse duration, laser-induced damage is known to be triggered by nano-sized defects embedded in the optical coating. In this work, we demonstrate the mitigation of damage precursors during the manufacturing of ion-beam sputtered (IBS) coatings using two approaches: ion bombardment with a secondary ion source and laser irradiation with a nanosecond-pulsed laser. Optical coatings produced with both technologies show a significantly increased damage threshold when tested in large-area raster scans.
  • Zugangsstatus: Freier Zugang