Search Results - "Glueckler, H."

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    New Method for a Continuous Determination of the Spin Tune in Storage Rings and Implications for Precision Experiments by Eversmann, D, Hejny, V, Hinder, F, Kacharava, A, Pretz, J, Rathmann, F, Rosenthal, M, Trinkel, F, Andrianov, S, Augustyniak, W, Bagdasarian, Z, Bai, M, Bernreuther, W, Bertelli, S, Berz, M, Bsaisou, J, Chekmenev, S, Chiladze, D, Ciullo, G, Contalbrigo, M, de Vries, J, Dymov, S, Engels, R, Esser, F M, Felden, O, Gaisser, M, Gebel, R, Glückler, H, Goldenbaum, F, Grigoryev, K, Grzonka, D, Guidoboni, G, Hanhart, C, Heberling, D, Hempelmann, N, Hetzel, J, Hipple, R, Hölscher, D, Ivanov, A, Kamerdzhiev, V, Kamys, B, Keshelashvili, I, Khoukaz, A, Koop, I, Krause, H-J, Krewald, S, Kulikov, A, Lehrach, A, Lenisa, P, Lomidze, N, Lorentz, B, Maanen, P, Macharashvili, G, Magiera, A, Maier, R, Makino, K, Mariański, B, Mchedlishvili, D, Meißner, Ulf-G, Mey, S, Nass, A, Natour, G, Nikolaev, N, Nioradze, M, Nogga, A, Nowakowski, K, Pesce, A, Prasuhn, D, Ritman, J, Rudy, Z, Saleev, A, Semertzidis, Y, Senichev, Y, Shmakova, V, Silenko, A, Slim, J, Soltner, H, Stahl, A, Stassen, R, Statera, M, Stephenson, E, Stockhorst, H, Straatmann, H, Ströher, H, Tabidze, M, Talman, R, Thörngren Engblom, P, Trzciński, A, Uzikov, Yu, Valdau, Yu, Valetov, E, Vassiliev, A, Weidemann, C, Wilkin, C, Wirzba, A, Wrońska, A, Wüstner, P, Zakrzewska, M, Zuprański, P, Zyuzin, D

    Published in Physical review letters (28-08-2015)
    “…A new method to determine the spin tune is described and tested. In an ideal planar magnetic ring, the spin tune-defined as the number of spin precessions per…”
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    Formation of hydrogen impurity States in silicon and insulators at low implantation energies by Prokscha, T, Morenzoni, E, Eshchenko, D G, Garifianov, N, Glückler, H, Khasanov, R, Luetkens, H, Suter, A

    Published in Physical review letters (01-06-2007)
    “…The formation of hydrogenlike muonium (Mu) has been studied as a function of implantation energy in intrinsic Si, thin films of condensed van der Waals gases…”
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    Antiproton confinement in a Penning-Ioffe trap for antihydrogen by Gabrielse, G, Larochelle, P, Le Sage, D, Levitt, B, Kolthammer, W S, Kuljanishvili, I, McConnell, R, Wrubel, J, Esser, F M, Glückler, H, Grzonka, D, Hansen, G, Martin, S, Oelert, W, Schillings, J, Schmitt, M, Sefzick, T, Soltner, H, Zhang, Z, Comeau, D, George, M C, Hessels, E A, Storry, C H, Weel, M, Speck, A, Nillius, F, Walz, J, Hänsch, T W

    Published in Physical review letters (16-03-2007)
    “…Antiprotons (p[over]) remain confined in a Penning trap, in sufficient numbers to form antihydrogen (H[over ) atoms via charge exchange, when the radial field…”
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    Neutron experiments with cryogenic methane hydrate and mesitylene moderators by Nünighoff, K., Pohl, Ch, Koulikov, S., Cantargi, F., Conrad, H., Filges, D., Glückler, H., Goldenbaum, F., Granada, R., Hansen, G., Matzerath, T., Paul, N., Petriw, S., Schaal, H., Soltner, H., Stelzer, H., Ninaus, W., Wohlmuther, M.

    “…In this article we describe the experimental results of a methane hydrate moderator as well as as mesitylene moderator operated at a temperature around 20K at…”
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    Formation of hydrogen impurity states in silicon and insulators at low implantation energies by Prokscha, T, Morenzoni, E, Eshchenko, D. G, Garifianov, N, Glueckler, H, Khasanov, R, Luetkens, H, Suter, A

    Published 11-05-2007
    “…The formation of hydrogen-like muonium (Mu) has been studied as a function of implantation energy in intrinsic Si, thin films of condensed van der Waals gases…”
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    Observation of magnetic order in the double-layer system La sub 2 M Cu sub 2 O sub 6+. delta. ( M =Ca,Sr) by Ansaldo, E.J., Niedermayer, C., Glueckler, H., Stronach, C.E., Riseman, T.M., Noakes, D.R., Obradors, X., Fuertes, A., Navarro, J.M., Gomez, P., Casan, N., Martinez, B., Perez, F., Rodriguez-Carvajal, J., Cary, R.S., Chow, K.

    Published in Physical review. B, Condensed matter (01-08-1992)
    “…Measurements of the spin rotation and depolarization of implanted positive muons have revealed that La{sub 2}SrCu{sub 2}O{sub 6+{delta}}, La{sub 2}CaCu{sub…”
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