Recent advances in compression molding process offer a potential high volume precision net shape fabrication method for micro and diffractive glass optical elements. In this research, glass diffractive optical elements with lateral features in the order of 2 m and a vertical height of about 500 nm were fabricated using glassy carbon molds and BK-7 optical glass material. Glassy carbon molds used in this research were fabricated with traditional cleanroom lithography and reactive ion etching process. Compression mold process was performed to duplicate the diffractive structures onto optical glass surface. Molded glass diffractive elements were studied using an atomic force microscope and a Veeco optical profilometer to evaluate the accuracy ...
The trend towards miniaturization and functional integration of optical systems and components is al...
Compression molding process can potentially be used to make high precision glass lenses. In a lens m...
Because of the limitation of manufacturing capability, free-form glass optics cannot be produced in ...
Recent advances in compression molding of glass optical elements for mass production offer the poten...
Through design, fabrication and measurement of compression molded low T(ind g) glass DOE (diffractiv...
Microlens and diffractive optical lenses and mirror are increasingly used in optomechanical devices....
A consumer market for diffractive optical elements in glass can only be created if high efficient el...
Precision glass molding is a more cost efficient process for the large volume manufacturing of highl...
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...
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...
Compression molding of precision optics is gradually becoming a viable manufacturing process for low...
Polymer optics are widely used in various applications, replacing traditional glass lenses. The abil...
Glassy carbon is used nowadays for a variety of applications because of its mechanical strength, the...
The trend towards miniaturization and functional integration of optical systems and components is al...
Compression molding process can potentially be used to make high precision glass lenses. In a lens m...
Because of the limitation of manufacturing capability, free-form glass optics cannot be produced in ...
Recent advances in compression molding of glass optical elements for mass production offer the poten...
Through design, fabrication and measurement of compression molded low T(ind g) glass DOE (diffractiv...
Microlens and diffractive optical lenses and mirror are increasingly used in optomechanical devices....
A consumer market for diffractive optical elements in glass can only be created if high efficient el...
Precision glass molding is a more cost efficient process for the large volume manufacturing of highl...
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...
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...
Compression molding of precision optics is gradually becoming a viable manufacturing process for low...
Polymer optics are widely used in various applications, replacing traditional glass lenses. The abil...
Glassy carbon is used nowadays for a variety of applications because of its mechanical strength, the...
The trend towards miniaturization and functional integration of optical systems and components is al...
Compression molding process can potentially be used to make high precision glass lenses. In a lens m...
Because of the limitation of manufacturing capability, free-form glass optics cannot be produced in ...