The space science community has identified a need for ultra-light weight, large aperture optical systems that are capable of producing high-resolution images of low contrast. Current mirror technologies are limited due either to not being scalable to larger sizes at reasonable masses, or to lack of surface finish, dimensional stability in a space environment or long fabrication times. This paper will discuss the development of thin-shell, nano-laminate mirror substrates that are capable of being electro-actively figured. This technology has the potential to substantially reduce the cost of space based optics by allowing replication of ultra-lightweight primary mirrors from a master precision tool. Precision master tools have been shown to b...
As part of a small satellite technology demonstration that will utilize autonomous assembly, reconfi...
SRS Technologies and NASA Marshall Space Flight Center have conducted a research effort to explore t...
As one of the most-critical components in space optical cameras, the performance of space mirrors di...
A novel active mirror concept based on carbon fiber reinforced polymer (CFRP) materials is presented...
Efforts are under way to develop a special class of thin-shell curved mirrors for high-resolution im...
A novel active mirror technology based on carbon fiber reinforced polymer (CFRP) substrates and repl...
A novel active mirror technology based on carbon fiber reinforced polymer (CFRP) substrates and repl...
Abstract- Advances in earth and space instrumentation will come from future optical systems that can...
The success of the Hubble Space Telescope created a great interest in the next generation of space t...
Optical quality mirrors are heavy, expensive and difficult to manufacture. This paper presents a nov...
Optical quality mirrors are heavy, expensive and difficult to manufacture. This paper presents a nov...
Optical quality mirrors are heavy, expensive and difficult to manufacture. This paper presents a nov...
Due to very low weight requirements, high manufacturing costs, and long lead times, monolithic glass...
This paper presents a concept for ultralightweight deformable mirrors, based on a thin substrate of ...
Ultra-short laser applications require high quality dielectric optics. The natural dispersion of lig...
As part of a small satellite technology demonstration that will utilize autonomous assembly, reconfi...
SRS Technologies and NASA Marshall Space Flight Center have conducted a research effort to explore t...
As one of the most-critical components in space optical cameras, the performance of space mirrors di...
A novel active mirror concept based on carbon fiber reinforced polymer (CFRP) materials is presented...
Efforts are under way to develop a special class of thin-shell curved mirrors for high-resolution im...
A novel active mirror technology based on carbon fiber reinforced polymer (CFRP) substrates and repl...
A novel active mirror technology based on carbon fiber reinforced polymer (CFRP) substrates and repl...
Abstract- Advances in earth and space instrumentation will come from future optical systems that can...
The success of the Hubble Space Telescope created a great interest in the next generation of space t...
Optical quality mirrors are heavy, expensive and difficult to manufacture. This paper presents a nov...
Optical quality mirrors are heavy, expensive and difficult to manufacture. This paper presents a nov...
Optical quality mirrors are heavy, expensive and difficult to manufacture. This paper presents a nov...
Due to very low weight requirements, high manufacturing costs, and long lead times, monolithic glass...
This paper presents a concept for ultralightweight deformable mirrors, based on a thin substrate of ...
Ultra-short laser applications require high quality dielectric optics. The natural dispersion of lig...
As part of a small satellite technology demonstration that will utilize autonomous assembly, reconfi...
SRS Technologies and NASA Marshall Space Flight Center have conducted a research effort to explore t...
As one of the most-critical components in space optical cameras, the performance of space mirrors di...