Paper
7 September 1999 Advantages of evaporation of hafnium in a reactive environment formanufacture of high-damage-threshold multilayer coatings by electron-beam deposition
Christopher J. Stolz, Lynn Matthew Sheehan, Marc K. Von Gunten, Ron P. Bevis, Douglas J. Smith
Author Affiliations +
Abstract
Electron-beam deposition is the current method to produce large-aperture high laser-induced damage threshold coatings for the National Ignition Facility, a 1.8 MJ fusion laser. The e-beam process is scalable to large optics up to 0.25 m2 and with laser conditioning has relatively benign coating defect ejections resulting in high damage threshold thin films. The latest technological breakthrough in manufacturing high damage threshold coatings is e-beam deposition of hafnia by evaporation from a metallic instead of an oxide source in a reactive environment. Although the damage threshold is not significantly increased, a 3-10x defect reduction occurs resulting in significantly less coating modification during laser conditioning. Additional benefits of this technology include improved interfaces for the elimination of flat-bottom pits and up to 3x reduction in plume instability for improved layer thickness control and spectral performance.
© (1999) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Christopher J. Stolz, Lynn Matthew Sheehan, Marc K. Von Gunten, Ron P. Bevis, and Douglas J. Smith "Advantages of evaporation of hafnium in a reactive environment formanufacture of high-damage-threshold multilayer coatings by electron-beam deposition", Proc. SPIE 3738, Advances in Optical Interference Coatings, (7 September 1999); https://doi.org/10.1117/12.360095
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Cited by 28 scholarly publications.
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KEYWORDS
Hafnium

Thin film coatings

National Ignition Facility

Optical coatings

Silica

Interfaces

Laser damage threshold

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