Search
Menu
Spectrogon US - Optical Filters 2024 LB

Superpolishing Deep-UV Optics

Facebook X LinkedIn Email
Superpolished crystalline substrates deliver important benefits for coated optics in demanding ultraviolet laser applications, but the successful use of the process requires a consideration of its unique subtleties.

David Collier and Rod Schuster, Alpine Research Optics

Demanding ultraviolet laser applications, such as microlithography and lasik, are driving the need for coated optics that deliver superior performance and longer lifetimes. Tremendous advances have been made in both areas in recent years, and to continue this progress, optical component manufacturers are turning to low surface roughness, or superpolished, substrates of UV-compatible crystalline materials such as CaF2 and MgF2. Three primary loss mechanisms influence the performance of high-reflection thin-film coatings: transmission, absorption and scatter. Transmission and absorption can...Read full article

Related content from Photonics Media



    Articles


    Products


    Photonics Handbook Articles


    White Papers


    Webinars


    Photonics Dictionary Terms


    Media


    Photonics Buyers' Guide Categories


    Companies
    Published: February 2005
    Glossary
    coated optics
    Optical elements that have been coated with one or more layers of dielectric, or metallic material. These coatings serve to reduce or increase reflection from the surface, and to protect the surfaces from fumes or abrasion. Magnesium fluoride, silicon dioxide, and zinc sulphide are a few of the most commonly used coating materials.
    microlithography
    A technique for producing micron-size structures on surfaces by using short-wavelength light or electron beams.
    Basic Sciencecoated opticsCoatingsFeaturesindustrialLASIKmicrolithographyMicroscopySensors & Detectorsultraviolet laser applications

    We use cookies to improve user experience and analyze our website traffic as stated in our Privacy Policy. By using this website, you agree to the use of cookies unless you have disabled them.