REG NASA-LLIS-0751--2000 Lessons Learned Binary and Hybird Optics for Space Applications.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-04-04a71 Center Point of Contact: MSFCa71 Submitted by: Wil HarkinsSubject: Binary and Hybird Optics for Space Applications Practice: Binary (diffractive) optics combined with conventional (refractive) optics offer a signific
2、ant potential for space optics reliability improvement.Programs that Certify Usage: N/ACenter to Contact for Information: MSFCImplementation Method: This Lesson Learned is based on Reliability Practice number PD-ED-1266, from NASA Technical Memorandum 4322A, Reliability Preferred Practices for Desig
3、n and Test.Benefit:Improved ruggedness, reduced size, and greater opportunity for redundancy are the potential benefits of using binary and hybrid optical systems for space applications. Hybrid optical systems can be designed that are less sensitive to color (or chromatic variations) and to temperat
4、ure variations. When combined with conventional optics, binary optical systems can correct for spherical aberrations.Implementation Method:Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Binary Optics: Binary (diffractive) optics uses computer-aided
5、design (CAD) tools and very-large-scale-integration (VLSI) electronic circuit manufacturing technology to create novel optical devices and to provide design freedom and new materials choices for optical elements. When combined with conventional (refractive) optical lens systems, binary optical syste
6、ms cannot only provide athermalization and achromatization, but offer the opportunity for miniaturization, significant weight savings, and resulting opportunity for redundancy in aerospace telescope systems, sensors, vision systems, and microelectronic optical systems.While conventional optics lense
7、s are polished to a desired profile, binary optics uses high resolution lithography (the design and replication process used in electronic circuit fabrication) to transfer a binary surface relief pattern to the optical element. This pattern is then etched into a surface using ion-beam etchers. A sin
8、gle etching step produces a two-level surface, thus the term binary optics. The etching process can be repeated with different etch depths to produce multi-level optical elements.A binary coded set of lithographic masks can double the number of phase levels with each etching step. For example, four
9、etching steps result in a 16-level optical element with a theoretical diffraction efficiency of better than 99 percent. The etch profile approximates a continuous phase surface.Hybrid Optics: Hybrid diffractive/refractive lenses are being considered for NASAs Geostationary Earth Observatory (GEO) to
10、 reduce weight and increase reliability of its sensors, telescopes and imaging systems. Hybrid lenses can be built that weigh less than half of conventional lenses, offering the possibility of providing redundant systems. Since the color separation properties of binary optic lenses are opposite in s
11、ign to those of a traditional lens, achromatic, lenses can be constructed using combined diffractive/refractive elements.Certain optical materials, particularly plastics and infrared materials, have optical and mechanical properties that may cause decreased performance over a wide temperature range.
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