This report presents concepts and methods, major conclusions, and major recommendations concerning the fabrication of high energy laser optics (HELO) that are to be machined by the Large Optics Diamond Turning Machine (LODTM) at the Lawrence Livermore National Laboratory (LLNL). Detailed discussions of concepts and methods proposed for metrological operations, polishing of reflective surfaces, mounting of optical components, construction of mirror substrates, and applications of coatings are included
Laser metal deposition (LMD) as an additive manufacturing (AM) processes is characterized by high de...
This 41-page resource, developed by the National Center for Optics and Photonics Education (OP-TEC),...
Starting from the optical properties of laser beams, the requirements of optical systems for manipul...
Lawrence Livermore National Laboratory is in the process of constructing the National Ignition Facil...
The purpose of this report is to describe the Laser Interferometer System designed for the Large Opt...
Processes were developed that use lasers as manufacturing tools. These processes were stripping of i...
World market competition boosts trends like mass customization and open innovation which result in a...
High strength steel materials, coated sheet metals and other metallic materials for manufacturing ca...
This paper reports on the opto-mechanical design and manufacturing of a highly dynamic piezo-driven ...
The presented laser based process chain is currently under development and focuses on the fabricatio...
Lawrence Livermore National Laboratory (LLNL) has initiated a project to develop a high energy laser...
Demands for lower costs and higher productivity lead to innovative developments in production techno...
Individually shaped light distributions become more and more important in lighting technologies and ...
Laser Additive Manufacturing (LAM) of parts and components fascinates due to process specific advant...
Purpose Laser materials processing system technology has become indispensible to the tool and die ma...
Laser metal deposition (LMD) as an additive manufacturing (AM) processes is characterized by high de...
This 41-page resource, developed by the National Center for Optics and Photonics Education (OP-TEC),...
Starting from the optical properties of laser beams, the requirements of optical systems for manipul...
Lawrence Livermore National Laboratory is in the process of constructing the National Ignition Facil...
The purpose of this report is to describe the Laser Interferometer System designed for the Large Opt...
Processes were developed that use lasers as manufacturing tools. These processes were stripping of i...
World market competition boosts trends like mass customization and open innovation which result in a...
High strength steel materials, coated sheet metals and other metallic materials for manufacturing ca...
This paper reports on the opto-mechanical design and manufacturing of a highly dynamic piezo-driven ...
The presented laser based process chain is currently under development and focuses on the fabricatio...
Lawrence Livermore National Laboratory (LLNL) has initiated a project to develop a high energy laser...
Demands for lower costs and higher productivity lead to innovative developments in production techno...
Individually shaped light distributions become more and more important in lighting technologies and ...
Laser Additive Manufacturing (LAM) of parts and components fascinates due to process specific advant...
Purpose Laser materials processing system technology has become indispensible to the tool and die ma...
Laser metal deposition (LMD) as an additive manufacturing (AM) processes is characterized by high de...
This 41-page resource, developed by the National Center for Optics and Photonics Education (OP-TEC),...
Starting from the optical properties of laser beams, the requirements of optical systems for manipul...