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Laser 3D Printing of Inorganic Free-Form Micro-Optics
by
Merkininkaitė, Greta
, Šakirzanovas, Simas
, Malinauskas, Mangirdas
, Čiburys, Arūnas
, Gailevičius, Darius
, Juodkazis, Saulius
, Varapnickas, Simonas
, Gonzalez-Hernandez, Diana
in
3-D printers
/ 3D printing
/ Additive manufacturing
/ astrophotonics
/ Composite materials
/ Design
/ Direct laser writing
/ Free form
/ Glass substrates
/ Heat treatment
/ High temperature
/ laser 3D nanolithography
/ Laser applications
/ Lasers
/ Micro-optics
/ Nanolithography
/ Optical components
/ Optics
/ Polymerization
/ Remote sensing
/ SZ2080TM
/ Three dimensional printing
/ Ultrafast lasers
2021
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Laser 3D Printing of Inorganic Free-Form Micro-Optics
by
Merkininkaitė, Greta
, Šakirzanovas, Simas
, Malinauskas, Mangirdas
, Čiburys, Arūnas
, Gailevičius, Darius
, Juodkazis, Saulius
, Varapnickas, Simonas
, Gonzalez-Hernandez, Diana
in
3-D printers
/ 3D printing
/ Additive manufacturing
/ astrophotonics
/ Composite materials
/ Design
/ Direct laser writing
/ Free form
/ Glass substrates
/ Heat treatment
/ High temperature
/ laser 3D nanolithography
/ Laser applications
/ Lasers
/ Micro-optics
/ Nanolithography
/ Optical components
/ Optics
/ Polymerization
/ Remote sensing
/ SZ2080TM
/ Three dimensional printing
/ Ultrafast lasers
2021
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Laser 3D Printing of Inorganic Free-Form Micro-Optics
by
Merkininkaitė, Greta
, Šakirzanovas, Simas
, Malinauskas, Mangirdas
, Čiburys, Arūnas
, Gailevičius, Darius
, Juodkazis, Saulius
, Varapnickas, Simonas
, Gonzalez-Hernandez, Diana
in
3-D printers
/ 3D printing
/ Additive manufacturing
/ astrophotonics
/ Composite materials
/ Design
/ Direct laser writing
/ Free form
/ Glass substrates
/ Heat treatment
/ High temperature
/ laser 3D nanolithography
/ Laser applications
/ Lasers
/ Micro-optics
/ Nanolithography
/ Optical components
/ Optics
/ Polymerization
/ Remote sensing
/ SZ2080TM
/ Three dimensional printing
/ Ultrafast lasers
2021
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Journal Article
Laser 3D Printing of Inorganic Free-Form Micro-Optics
2021
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Overview
A pilot study on laser 3D printing of inorganic free-form micro-optics is experimentally validated. Ultrafast laser direct-write (LDW) nanolithography is employed for structuring hybrid organic-inorganic material SZ2080TM followed by high-temperature calcination post-processing. The combination allows the production of 3D architectures and the heat-treatment results in converting the material to inorganic substances. The produced miniature optical elements are characterized and their optical performance is demonstrated. Finally, the concept is validated for manufacturing compound optical components such as stacked lenses. This is an opening for new directions and applications of laser-made micro-optics under harsh conditions such as high intensity radiation, temperature, acidic environment, pressure variations, which include open space, astrophotonics, and remote sensing.
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