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  • 1
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    In:  CASI
    Publication Date: 2006-10-26
    Description: Increase in transition time explained by existence of disturbance on shock tube walls
    Keywords: FACILITIES, RESEARCH, AND SUPPORT
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  • 2
    Publication Date: 2006-10-26
    Description: Transition in shock tube boundary layers
    Keywords: FACILITIES, RESEARCH, AND SUPPORT
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  • 3
    Publication Date: 2006-02-14
    Description: The objective of this LDEF experiment is to measure the effects of exposure to the shuttle launch and near Earth space environments on the optical properties of ion beam textured high absorptance solar thermal control surfaces, the optical and electrical properties of ion beam sputtered conductive solar thermal control surfaces, and the weight loss of ion beam deposited oxide polymer films. The various types of surfaces to be tested include six major categories: (1) ion beam textured surfaces suitable for space solar thermal (solar concentration) application; (2) painted and/or state of the art solar thermal surfaces; (3) ion beam sputtered conductive coatings for thermal and space charge control (e.g., indium-oxide coated metalized FEP Teflon); (4) ion beam sputtered conductive coated solar sail materials for space charge control and cooling through emittance; (5) micrometeoroid sensitive samples whose optical properties change only as a result of micrometeoroid impact; and (6) Kapton coated with oxide polymer films to minimize oxygen degradation at near Earth orbit altitudes.
    Keywords: NONMETALLIC MATERIALS
    Type: NASA. Langley Research Center Long Duration Exposure Facility (LDEF); p 62-65
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  • 4
    Publication Date: 2011-08-19
    Description: A single and dual ion beam system was used to generate amorphous carbon films with diamond like properties. A methane/argon mixture at a molar ratio of 0.28 was ionized in the low pressure discharge chamber of a 30-cm-diameter ion source. A second ion source, 8 cm in diameter was used to direct a beam of 600 eV Argon ions on the substrates (fused silica or silicon) while the deposition from the 30-cm ion source was taking place. Nuclear reaction and combustion analysis indicate H/C ratios for the films to be 1.00. This high value of H/C, it is felt, allowed the films to have good transmittance. The films were impervious to reagents which dissolve graphitic and polymeric carbon structures. Although the measured density of the films was approximately 1.8 gm/cu cm, a value lower than diamond, the films exhibited other properties that were relatively close to diamond. These films were compared with diamond like films generated by sputtering a graphite target.
    Keywords: CHEMISTRY AND MATERIALS (GENERAL)
    Type: Thin Solid Films (ISSN 0040-6090); 131; 245-254
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  • 5
    Publication Date: 2011-08-19
    Description: MIS structures are fabricated on p-type InP, GaAs, and Si substrated by direct ionization of 25-percent CH4 in Ar and ion-beam deposition of 70-nm-thick diamondlike films, followed by application of Al gate electrodes and ohmic contacts. The films are found to have bandgap 0.9-1.1 eV, resistivity 8.1 Mohm cm, breakdown field strength 1 MV/cm, and density 1.8 g/cu cm, to be thermally stable up to 400 C, and to undergo rapid decomposition above 450 C. The electrical properties of the MIS structures are significantly improved by sputter cleaning the substrates with a 1-keV 2-mA/sq cm Ar beam for 2 min at 300 microtorr prior to C-film deposition. The resulting structures have fixed insulator charge number densities 4 x 10 to the 12th/sq cm (InP), 7.5 x 10 to the 12th/sq cm (GaAs), and 9 x 10 to the 11th/sq cm (Si) and interface state densities (5, 200, and 0.5) x 10 to the 12th/ sq cm eV, respectively. It is suggested that the low optical bandgap and resistivity of the C films and the high insulator-charge and interface-state densities make them unstable as gate dielectrics for microelectronics.
    Keywords: ELECTRONICS AND ELECTRICAL ENGINEERING
    Type: Journal of Vacuum Science and Technology A (ISSN 0734-2101); 4; 1013-101
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  • 6
    Publication Date: 2011-08-16
    Description: The effects of simulated micrometeoroid exposure on the performance of N/P silicon solar cells encapsulated for their protection in fluorinated ethylene propylene were determined in a shock tube. It was found that the short-circuit current decreased after exposure to the simulated micrometeoroid particles. The shape of the curve remained the same and was simply translated downward with a concomitant drop in open-circuit voltage.
    Keywords: AUXILIARY SYSTEMS
    Type: Journal of Spacecraft and Rockets; 8; Nov. 197
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  • 7
    Publication Date: 2011-08-12
    Description: Thin film plastic encapsulated CdS solar cells performance reduction after simulated micrometeoroid impact in shock tube
    Keywords: AUXILIARY SYSTEMS
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  • 8
    Publication Date: 2011-08-12
    Description: Simulated micrometeoroid bombardment of white thermal control coating causing changes in optical properties
    Keywords: STRUCTURAL MECHANICS
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  • 9
    Publication Date: 2011-08-11
    Description: Possible degradation effects produced in uncovered and covered N/P silicon solar cells by simulated micrometeoroid exposure
    Keywords: AUXILIARY SYSTEMS
    Type: AIAA JOURNAL
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  • 10
    Publication Date: 2011-08-11
    Description: Criticism of article on microparticle impact effect on metal optical properties
    Keywords: SPACE VEHICLES
    Type: AIAA JOURNAL
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