Search Results - "Roberto, J.B."

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    Actinide targets for the synthesis of super-heavy elements by Roberto, J.B., Alexander, C.W., Boll, R.A., Burns, J.D., Ezold, J.G., Felker, L.K., Hogle, S.L., Rykaczewski, K.P.

    Published in Nuclear physics. A (01-12-2015)
    “…Since 2000, six new super-heavy elements with atomic numbers 113 through 118 have been synthesized in hot fusion reactions of 48Ca beams on actinide targets…”
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    Journal Article
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    Preparation of actinide targets for the synthesis of the heaviest elements by Runke, J., Düllmann, Ch. E., Eberhardt, K., Ellison, P. A., Gregorich, K. E., Hofmann, S., Jäger, E., Kindler, B., Kratz, J. V., Krier, J., Lommel, B., Mokry, C., Nitsche, H., Roberto, J. B., Rykaczewski, K. P., Schädel, M., Thörle-Pospiech, P., Trautmann, N., Yakushev, A.

    “…The heaviest elements are synthesized in heavy-ion induced hot fusion reactions with various actinide targets. Because the actinide material is often available…”
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    Behavior of Ar plasmas formed in a mirror field electron cyclotron resonance microwave ion source by Gorbatkin, S. M., Berry, L. A., Roberto, J. B.

    “…Langmuir probe measurements, photography, and monitoring of downstream microwave propagation were used to characterize argon plasmas obtained with a mirror…”
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    Potential applications of an electron cyclotron resonance multicusp plasma source by Tsai, C. C., Berry, L. A., Gorbatkin, S. M., Haselton, H. H., Roberto, J. B., Stirling, W. L.

    “…An electron cyclotron resonance (ECR) multicusp plasmatron has been developed by feeding a multicusp bucket arc chamber with a compact ECR plasma source. This…”
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    Weight change measurements of erosion/deposition at beryllium limiter tiles in the Impurity Study Experiment‐B by Roberto, J. B., Edmonds, P. H., England, A. C., Gabbard, A., Zuhr, R. A.

    “…The weight changes of Be tiles which functioned as a rail limiter in ISX‐B for more than 3500 beam‐heated discharges have been determined. The net weight loss…”
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  12. 12

    Plasma edge studies in ISX‐B and EBT‐S using surface probes and laser‐induced fluorescence by Roberto, J. B., Clausing, R. E., Dullni, E., Emerson, L. C., Heatherly, L., Schweer, B., Withrow, S. P., Zuhr, R. A.

    “…Results of recent plasma edge experiments using surface collection probes and laser‐induced fluorescence in the ISX‐B tokamak and EBT‐S bumpy torus are…”
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