Precision glass molding is a more cost efficient process for the large volume manufacturing of highly complex optical surfaces than direct manufacturing. Glassy carbon (GC) molds are used for precision glass molding, because they can be operated at temperatures up to 2000 degrees C. Used today mainly for manufacturing aspheric lenses, we consider here material technology for diffractive optical element (DOE). For diffractive optics the surface structuring is in the micrometer range and a surface roughness Ra lower than 20 nm is required. We introduce a reactive ion etching process with a titanium hard mask. Fused silica (FS) molds with identical optical functionality were fabricated for comparison. All molds were used for precision glass mo...
Laser technology has a rising demand for high precision Fused Silica components. Precision Glass Mou...
Microlens and diffractive optical lenses and mirror are increasingly used in optomechanical devices....
The trend towards miniaturization and functional integration of optical systems and components is al...
A consumer market for diffractive optical elements in glass can only be created if high efficient el...
Replication techniques for diffractive optical elements (DOEs) in soft materials such as plastic inj...
Replication techniques for diffractive optical elements (DOEs) in soft materials such as plastic inj...
Glassy carbon is used nowadays for a variety of applications because of its mechanical strength, the...
The demand of high resolution diffractive optical elements (DOE) is growing. Smaller critical dimens...
The demand of high resolution diffractive optical elements (DOE) is growing. Smaller critical dimens...
Diffractive optical elements (DOEs) consist of surface reliefs with dimensions in the micrometer ran...
Recent advances in compression molding process offer a potential high volume precision net shape fab...
Through design, fabrication and measurement of compression molded low T(ind g) glass DOE (diffractiv...
The range of applications for photonic systems, which includes industrial production as well as medi...
Compression molding of precision optics is gradually becoming a viable manufacturing process for low...
Recent advances in compression molding of glass optical elements for mass production offer the poten...
Laser technology has a rising demand for high precision Fused Silica components. Precision Glass Mou...
Microlens and diffractive optical lenses and mirror are increasingly used in optomechanical devices....
The trend towards miniaturization and functional integration of optical systems and components is al...
A consumer market for diffractive optical elements in glass can only be created if high efficient el...
Replication techniques for diffractive optical elements (DOEs) in soft materials such as plastic inj...
Replication techniques for diffractive optical elements (DOEs) in soft materials such as plastic inj...
Glassy carbon is used nowadays for a variety of applications because of its mechanical strength, the...
The demand of high resolution diffractive optical elements (DOE) is growing. Smaller critical dimens...
The demand of high resolution diffractive optical elements (DOE) is growing. Smaller critical dimens...
Diffractive optical elements (DOEs) consist of surface reliefs with dimensions in the micrometer ran...
Recent advances in compression molding process offer a potential high volume precision net shape fab...
Through design, fabrication and measurement of compression molded low T(ind g) glass DOE (diffractiv...
The range of applications for photonic systems, which includes industrial production as well as medi...
Compression molding of precision optics is gradually becoming a viable manufacturing process for low...
Recent advances in compression molding of glass optical elements for mass production offer the poten...
Laser technology has a rising demand for high precision Fused Silica components. Precision Glass Mou...
Microlens and diffractive optical lenses and mirror are increasingly used in optomechanical devices....
The trend towards miniaturization and functional integration of optical systems and components is al...