1,413 research outputs found

    NUCLEAR SPIN AND HYPERFINE-STRUCTURE MEASUREMENTS ON THE RADIOACTIVE-IODINE AND ASTATINE ISOTOPES (thesis)

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    Atomic-beam magnetic resonance techniques were used to measure the nuclear spins of I/sup 123/, I/sup 124/, I/sup 126/, I/sup 130/, I/sup 132/, I/ sup 133/, I/sup 135/, and At/sup 211/. Also, measurements of the magnetic-dipole interaction constant, and the electroquadrupole interaction constant, and the electroquadrupole interaction constant for I/sup 131/ and I/sup 132/ are reported. The design of the atomic-beam apparatus is described. Experimental methods and sample preparation are discussed and results are interpreted in the light of the single particle shell-model theory of nuclear structure. (J.R.D.

    Measurement of sputtering yields and energy transfer efficiencies of liquid metals Final report

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    Sputtering yields and energy transfer efficiency of ion bombarded liquid metals for application in electrostatics ion thrustors for space propulsio

    Food Preservation by Freezing

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    PDF pages: 2

    Optically pumped GaAs surface laser with corrugation feedback

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    A GaAs distributed-feedback laser was fabricated and pumped optically. A narrow stimulated spectrum was obtained around 0.83 µ with threshold pumping power of ~2 × 10^5 W/cm^2

    Ion beam micromachining of integrated optics components

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    Thin film integrated optics components such as light guides, modulators, directional couplers, and polarizers demand high quality edge smoothness and high resolution pattern formation in dimensions down to submicrometer size. Fabrication techniques combining holographic and scanning electron beam lithography with ion beam micromachining have produced planar phase gratings with intervals as small as 2800 Å, guiding channel couplers in GaAs, and also wire- grid polarizers for 10.6-µm radiation

    Channel Optical Waveguides and Directional Couplers in GaAs -- Imbedded and Ridged

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    Two-channel imbedded directional couplers were fabricated with proton implantation, yielding complete light transfer in 2 mm. Ridged channel guides were fabricated by ion-micromachining epitaxial layers, and a method of directional coupling was demonstrated

    Theory and fabrication of integrated optics directional couplers in GaAs

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    Channel optical waveguide couplers will be discussed, citing the fabrication of closely-spaced waveguides by proton implantation. Coupling was observed at 1.15μ and 1.06μ

    Eighty-Five Ways of Using Apples

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    PDF pages: 3

    Large aperture scanning airborne lidar

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    A large aperture scanning airborne lidar facility is being developed to provide important new capabilities for airborne lidar sensor systems. The proposed scanning mechanism allows for a large aperture telescope (25 in. diameter) in front of an elliptical flat (25 x 36 in.) turning mirror positioned at a 45 degree angle with respect to the telescope optical axis. The lidar scanning capability will provide opportunities for acquiring new data sets for atmospheric, earth resources, and oceans communities. This completed facility will also make available the opportunity to acquire simulated EOS lidar data on a near global basis. The design and construction of this unique scanning mechanism presents exciting technological challenges of maintaining the turning mirror optical flatness during scanning while exposed to extreme temperatures, ambient pressures, aircraft vibrations, etc
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