4.4 Article

Preparation and stress evolution of sol-gel SiO2 antireflective coatings for small-size anisotropic lithium triborate crystals

Journal

AIP ADVANCES
Volume 6, Issue 4, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4947135

Keywords

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Funding

  1. National Natural Science Foundation of China [U1230113, 11304228]
  2. National Key Technology Research and Development Program of China [2013BAJ01B01]
  3. Innovation Foundation of Shanghai Academy of Spaceflight Technology [SAST201370]
  4. Chen Guang project - Shanghai Municipal Education Commission
  5. Fundamental Research Funds for the Central Universities
  6. Shanghai Education Development Foundation

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Lithium triborate (LiB3O5, LBO) crystal is now one of the most useful nonlinear optical materials for frequency conversion of high power lasers. The use of the crystal, however, has been hampered by the unavailability of antireflective (AR) coatings with high laser damage resistance. In this work, a point contact dip-coating method is developed to prepare sol-gel SiO2 AR coatings on small-size LBO crystals. Using this approach, we obtain a homogenous coating surface on an 8 mmx8 mmx3 mm LBO crystal. The stress measurements show that the stresses in sol-gel SiO2 coatings vary with the time of natural drying, which is beyond our expectation. The anisotropic Young's modulus of the LBO crystal and the different evolution tendency of the stress in the different SiO2 coating layers are found to be responsible for the crack of the double-layer AR coatings on anisotropic LBO crystal. Meanwhile, the resulting coatings on LBO crystal achieve a LIDT of over 15 J/cm(2) (532 nm, 3ns) and the coated LBO is expected to have a transmittance of over 99% at 800 nm. (C) 2016 Author (s).

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