Search Results - "Klinkby, E"

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  1. 1

    Rejection-based sampling of inelastic neutron scattering by Cai, X.-X., Kittelmann, T., Klinkby, E., Márquez Damián, J.I.

    Published in Journal of computational physics (01-03-2019)
    “…•Overcoming artefacts introduced by conventional interpolation methods.•Reproducing continuous energy and angular spectra with high numerical accuracy.•Close…”
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    Journal Article
  2. 2

    Experimental study of concrete activation compared to MCNP simulations for safety of neutron sources by Hajdú, D., Dian, E., Gméling, K., Klinkby, E., Cooper-Jensen, C.P., Osán, J., Zagyvai, P.

    Published in Applied radiation and isotopes (01-05-2021)
    “…The neutron activation of shielding materials and the generated decay gamma radiation are well-known issues in terms of occupational exposure. Though the trace…”
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    Journal Article
  3. 3
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    Using Backscattering to Enhance Efficiency in Neutron Detectors by Kittelmann, T., Kanaki, K., Klinkby, E., Cai, X. X., Cooper-Jensen, C. P., Hall-Wilton, R.

    Published in IEEE transactions on nuclear science (01-06-2017)
    “…The principle of using strongly scattering materials to recover efficiency in detectors for neutron instruments, via backscattering of unconverted thermal…”
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    Journal Article
  5. 5

    Neutronic Design of the Bunker Shielding for the European Spallation Source by Zanini, L., DiJulio, D., Kennedy, S., Klinkby, E., Santoro, V.

    “…The European Spallation Source bunker is a common shielding area that surrounds the target monolith, protecting the instrument areas from the high dose of…”
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    Journal Article
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    Shielding analysis of the ITER Collective Thomson Scattering system by Lopes, A., Luís, R., Klinkby, E., Nietiadi, Y., Chambon, A., Nonbøl, E., Gonçalves, B., Jessen, M., Korsholm, S.B., Larsen, A.W., Lauritzen, B., Rasmussen, J., Salewski, M.

    Published in Fusion engineering and design (01-12-2020)
    “…•A neutronics analysis is presented for the ITER Collective Thomson Scattering.•The n0 uxes are underestimated by a 2–3 factor by the use of a homogeneous…”
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    Journal Article
  8. 8

    Neutronics analysis of the ITER Collective Thomson Scattering system by Lopes, A., Luís, R., Klinkby, E., Nonbøl, E., Jessen, M., Moutinho, R., Salewski, M., Rasmussen, J., Gonçalves, B., Lauritzen, B., Korsholm, S.B., Larsen, A.W., Vidal, C.

    Published in Fusion engineering and design (01-09-2018)
    “…•A neutronics analysis is presented for the ITER Collective Thomson Scattering.•A heat load of 3 W/cm3 was obtained in the receiver mirror (total…”
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    Journal Article
  9. 9

    Thermo-structural analyses of the in-vessel components of the ITER collective Thomson scattering system by Vidal, C., Luís, R., Pereira, B., Ferreira, R., Gonçalves, B., Korsholm, S.B., Lopes, A., Klinkby, E., Nonbøl, E., Jessen, M., Salewski, M., Rasmussen, J., Lauritzen, B., Larsen, A.W.

    Published in Fusion engineering and design (01-03-2019)
    “…•The CTS diagnostic system is being designed to be installed in ITER.•The CTS system will provide spatial and temporal measurements of plasma…”
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    Journal Article
  10. 10

    Monte Carlo Particle Lists: MCPL by Kittelmann, T., Klinkby, E., Knudsen, E.B., Willendrup, P., Cai, X.X., Kanaki, K.

    Published in Computer physics communications (01-09-2017)
    “…A binary format with lists of particle state information, for interchanging particles between various Monte Carlo simulation applications, is presented…”
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    Journal Article
  11. 11

    Calibration of buried NaI(Tl) scintillator detectors for natural radionuclide measurement based on Monte Carlo modelling by Chambon, A., Klinkby, E.B., Bu, M., Murray, A.S., Kook, M., Olesen, H., Nielsen, K.B., Lauritzen, B.

    “…Measurements of naturally occurring concentrations of 40K, and of the decay series of 238U and 232Th, are of interest in the earth sciences in general, and in…”
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    Journal Article
  12. 12

    Design of the cold and thermal neutron moderators for the European Spallation Source by Zanini, L., Andersen, K.H., Batkov, K., Klinkby, E.B., Mezei, F., Schönfeldt, T., Takibayev, A.

    “…At the European Spallation Source (ESS), neutrons will be generated by spallation induced by a 2-GeV proton beam on a tungsten target. ESS will have a grid of…”
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    Journal Article
  13. 13

    Verification of multiphysics coupling techniques for modeling of molten salt reactors by Groth-Jensen, J., Nalbandyan, A., Klinkby, E.B., Lauritzen, B., Sabbagh, P., Pedersen, A.V.

    Published in Annals of nuclear energy (15-12-2021)
    “…•The SEALION approach allows pre-determination of the temperature reactivity response.•The SEALION approach is computationally lightweight.•Serpent-OF coupling…”
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    Journal Article
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    Material assessment for ITER's collective Thomson Scattering first mirror by Santos, R., Policarpo, H., Goncalves, B., Varela, P., Nonbol, E., Klinkby, E., Lauritzen, B., Romanets, Y., Luis, R., Vaz, P.

    “…ITER's Collective Thomson Scattering (CTS) system is a diagnostic instrument that will measure the plasma density and velocity through Thomson scattering of…”
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    Conference Proceeding
  16. 16

    Demonstration of a single-crystal reflector-filter for enhancing slow neutron beams by Muhrer, G., Schönfeldt, T., Iverson, E.B., Mocko, M., Baxter, D.V., Hügle, Th, Gallmeier, F.X., Klinkby, E.B.

    “…The cold polycrystalline beryllium reflector-filter concept has been used to enhance the cold neutron emission of cryogenic hydrogen moderators, while…”
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    Journal Article
  17. 17

    Broad spectrum moderators and advanced reflector filters using super(208)Pb by Schonfeldt, T, Batkov, K, Klinkby, E B, Lauritzen, B, Mezei, F, Muhrer, G, Pitcher, E, Takibayev, A, Willendrup, P K, Zanini, L

    “…Cold and thermal neutrons used in neutrons scattering experiments are produced in nuclear reactors and spallation sources. The neutrons are cooled to thermal…”
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    Journal Article
  18. 18

    Study of energy response and resolution of the ATLAS barrel calorimeter to hadrons of energies from 20 to 350 GeV by Abdallah, J.M., Adragna, P., Anderson, K., Banfi, D., Bergeaas Kuutmann, E., Binet, S., Bourdarios, C., Burckhart Chromek, D., Callahan, J., Carminati, L., Carvalho, J., Castillo, M.V., Catinaccio, A., Chen, H., Ciobotaru, M., Consonni, M., Del Prete, T., Derue, F., Dita, S., Dittus, F., Dobson, M., Dolgoshein, B.A., Ebenstein, W.L., Efthymiopoulos, I., Eifert, T.F., El Kacimi, M., Fanti, M., Farthouat, P., Febbraro, R., Fedin, O.L., Filippini, G., Francavilla, P., Francis, D., Gadomski, S., Giokaris, N., Gollub, N., Gorini, B., Hajduk, Z., Hance, M., Iconomidou-Fayard, L., Jon-And, K., Joos, M., Jorgensen, S., Kaczmarska, A., Karyukhin, A., Kekelidze, G.D., Khoriauli, G., Khristachev, A., Kittelmann, T.H., Kolos, S., Krüger, K., Lanni, F., Lelas, D., Malek, F., Maneira, J., Mazzanti, M., Martin, F., McFarlane, K.W., Meng, Z., Mialkovski, V., Mosidze, M., Mouraviev, S.V., Nemecek, S., Oh, S.H., Onofre, A., Pallin, D., Paolone, V., Passmore, M.S., Patrichev, S., Peez, M., Perini, L., Petersen, T.C., Pina, J., Prieur, D., Puzo, P., Rembser, C., Rousseau, D., Sanchis, E., Schlereth, J., Schwemling, P., Shin, T., Smirnova, L., Solodkov, A., Solovianov, O., Soloviev, I., Sosnovtsev, V.V., Spanò, F., Stancu, S., Stanek, R., Tarrade, F., Tayalati, Y., Tisserant, S., Torres, J., Tremblet, L., Tsiskaridze, V., Unel, G., Van Berg, R., Vandelli, W., Vassilakopoulos, V.I., Wiesmann, M.

    “…A fully instrumented slice of the ATLAS detector was exposed to test beams from the SPS (Super Proton Synchrotron) at CERN in 2004. In this paper, the results…”
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    Journal Article
  19. 19

    Charm, beauty and charmonium production at HERA-B by Zoccoli, A

    “…is a fixed target experiment working on the 920 GeV proton beam of the HERA accelerator at the DESY laboratory in Hamburg. During the last data taking period…”
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    Journal Article
  20. 20

    Experimental study of concrete activation compared to MCNP simulations for safety of neutron sources by Hajdú, D, Dian, E, Gméling, K, Klinkby, E, Cooper-Jensen, C. P, Osán, J, Zagyvai, P

    Published 27-09-2019
    “…The neutron activation of shielding materials and the generated decay gamma radiation are well-known issues in terms of occupational exposure. Though the trace…”
    Get full text
    Journal Article