AbstractThe current state of the development of a laser based process chain for manufacturing fused silica optics is presented. In a first step fused silica is ablated with laser radiation to produce the geometry of the optics. A subsequent polishing step reduces the surface roughness and a third step uses micro ablation to remove the last remaining redundant material. Although the process chain is still under development, the ablation of fused silica already reaches ablation rates above 20 mm3/s with a resulting surface roughness of Ra < 5 μm and the polishing process is able to significantly reduce this roughness
Recent results of processing fused silica using a high-power \u1d444-switched CO2 laser source with ...
The increasing variety of optical components and materials, combined with stricter surface tolerance...
The material fused silica, as well as other brittle-hard materials such as glass ceramics, have grea...
The current state of the development of a laser based process chain for manufacturing fused silica o...
This paper presents the development of a laser based process chain for manufacturing fused silica op...
With laser polishing, the roughness of ground glass surfaces can be significantly reduced. With proc...
With laser radiation, glass material can be in-volume structured, melted and ablated. These processe...
With CO2-laser radiation glass material can be melted and ablated. These processes are used to reduc...
The presented laser based process chain is currently under development and focuses on the fabricatio...
Mechanical polishing of glass is a time consuming process especially for lenses deviating from spher...
Glass is relatively cheap and freely available. It has attractive properties such as resistance to t...
As a rapid and efficient processing technology, CO2 laser processing has been applied to remove fuse...
High accuracy freeform optics are used in advanced optical systems for reduction in size and improve...
Fused silica glass is a commonly used high-performance material. However, due tothe high temperature...
The enhancement of laser damage resistance of fused silica optics was a hotspot in scientific resear...
Recent results of processing fused silica using a high-power \u1d444-switched CO2 laser source with ...
The increasing variety of optical components and materials, combined with stricter surface tolerance...
The material fused silica, as well as other brittle-hard materials such as glass ceramics, have grea...
The current state of the development of a laser based process chain for manufacturing fused silica o...
This paper presents the development of a laser based process chain for manufacturing fused silica op...
With laser polishing, the roughness of ground glass surfaces can be significantly reduced. With proc...
With laser radiation, glass material can be in-volume structured, melted and ablated. These processe...
With CO2-laser radiation glass material can be melted and ablated. These processes are used to reduc...
The presented laser based process chain is currently under development and focuses on the fabricatio...
Mechanical polishing of glass is a time consuming process especially for lenses deviating from spher...
Glass is relatively cheap and freely available. It has attractive properties such as resistance to t...
As a rapid and efficient processing technology, CO2 laser processing has been applied to remove fuse...
High accuracy freeform optics are used in advanced optical systems for reduction in size and improve...
Fused silica glass is a commonly used high-performance material. However, due tothe high temperature...
The enhancement of laser damage resistance of fused silica optics was a hotspot in scientific resear...
Recent results of processing fused silica using a high-power \u1d444-switched CO2 laser source with ...
The increasing variety of optical components and materials, combined with stricter surface tolerance...
The material fused silica, as well as other brittle-hard materials such as glass ceramics, have grea...