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Materials for Infrared Windows and Domes: Properties and Performance
Daniel C. Harris
- 01 Aug 1999
364
TL;DR: The Heat of the Night and the Dust of the Battlefield Optical Properties of Infrared Windows Optical Performance of IR Windows Mechanical Properties Thermal Properties Fabrication of IR Materials Optical Coatings Erosion and Erosions Protection Proof Testing Diamond - Materials for the Future Appendices as mentioned in this paper.
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Abstract: The Heat of the Night and the Dust of the Battlefield Optical Properties of Infrared Windows Optical Performance of Infrared Windows Mechanical Properties Thermal Properties Fabrication of Infrared Materials Optical Coatings Erosion and Erosion Protection Proof Testing Diamond - Materials for the Future Appendices.
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Ductile Regime Grinding Aspheric Surface of Hot-Pressed Zinc Sulfide
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Development of Polishing Process for Optical Glass Dome Used in Airborne Electro Optical Payloads
Kamal K. Pant,Neraj Pandey,Sandeep Nayak,Amitava Ghosh +3 more
- 01 Jan 2021
TL;DR: In this paper, the authors developed a polishing process which utilized a customized subaperture polishing tool and optimized polishing parameters for polishing of the optical glass dome.
An aberration-eliminating processing technology for optical window working under differential pressure condition
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Recent Progress in the Development of Neodymium-Doped Ceramic Yttria
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TL;DR: In this paper, a plasma melting and quenching method has been developed to produce Nd3+-doped powders for consolidation into Nd: Y2O3 ceramic laser materials.
Joint influences of aerodynamic flow field and aerodynamic heating of the dome on imaging quality degradation of airborne optical systems
Haosu Xiao,Baojun Zuo,Yi Tian,Wang Zhang,Chenglong Hao,Chaofeng Liu,Li Qi,Fan Li,Li Zhang,Zhigang Fan +9 more
TL;DR: The results show that the aero-optical disturbance of the aerodynamic flow field and the aerodynamics heating of the dome significantly affect the imaging quality of an airborne optical system.
References
Atmospheric transmission in the 1 to 14μ region
TL;DR: In this paper, the transmission of the atmosphere for radiation of wave-lengths between 1 and 14 μ has been determined at sea level, and its dependence on meteorological conditions investigated.