DIFFER

T. W. Morgan

First name
T.
Middle name
W.
Last name
Morgan
ORCID
0000-0002-5066-015X
Kvon, V., Oyarzabal, E., Zoethout, E., Martin-Rojo, A. B., Morgan, T. W., & Tabares, F. L. (2017). Secondary electron emission of tin and tin-lithium under low energy helium plasma exposure. Nuclear Materials and Energy, 13, 21-27. https://doi.org/10.1016/j.nme.2017.09.005 (Original work published 2017)
Morgan, T. W., van den Berg, M. A., De Temmerman, G., Bardin, S., Aussems, D., & Pitts, R. A. (2017). Power deposition on misaligned castellated tungsten blocks in the Magnum-PSI and Pilot-PSI linear devices. Nuclear Fusion, 57(12), 126025. https://doi.org/10.1088/1741-4326/aa8109
Morgan, T. W., Vertkov, A., Bystrov, K., Lyublinski, I., Genuit, J. W., & Mazzitelli, G. (2017). Power handling of a liquid-metal based CPS structure under high steady-state heat and particle fluxes. Nuclear Materials and Energy, 12, 210-215. https://doi.org/10.1016/j.nme.2017.01.017 (Original work published 2017)
Brezinsek, S., Coenen, J. W., Schwartz-Selinger, T., Schmid, K., Kirschner, A., Hakola, A., … contributors, W. P. (2017). Plasma–wall interaction studies within the EUROfusion consortium: progress on plasma-facing components development and qualification. Nuclear Fusion, 57(11), 116041. https://doi.org/10.1088/1741-4326/aa796e
Aussems, D. U. B., Bystrov, K., Dogan, I., Arnas, C., Cabié, M., Neisius, T., … Morgan, T. W. (2017). Fast nanostructured carbon microparticle synthesis by one-step high-flux plasma processing. Carbon, 124, 403-414. https://doi.org/10.1016/j.carbon.2017.08.071 (Original work published 2017)
Buzi, L., De Temmerman, G., Huisman, A. E., Bardin, S., Morgan, T. W., Rasinski, M., … Van Oost, G. (2017). Response of tungsten surfaces to helium and hydrogen plasma exposure under ITER relevant steady state and repetitive transient conditions. Nuclear Fusion, 57(12), 126009. https://doi.org/10.1088/1741-4326/aa81e4
Dubinko, A., Terentyev, D., Bakaeva, A., Pardoen, T., Zibrov, M., & Morgan, T. W. (2017). Effect of high flux plasma exposure on the micro-structural and -mechanical properties of ITER specification tungsten. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions With Materials and Atoms, 393, 155-159. https://doi.org/10.1016/j.nimb.2016.10.041
Aussems, D. U. B., Khrapak, S. A., Dogan, I., van de Sanden, M. C. M., & Morgan, T. W. (2017). An analytical force balance model for dust particles with size up to several Debye lengths. Physics of Plasmas, 24(11), 113702. https://doi.org/10.1063/1.5001576
Balden, M., Elgeti, S., Zibrov, M., Bystrov, K., & Morgan, T. W. (2017). Effect of the surface temperature on surface morphology, deuterium retention and erosion of EUROFER steel exposed to low-energy, high-flux deuterium plasma. Nuclear Materials and Energy, 12, 289-296. https://doi.org/10.1016/j.nme.2017.01.001 (Original work published 2017)
Pitts, R. A., Bardin, S., Bazylev, B., van den Berg, M. A., Bunting, P., Carpentier, S., … Watkins, J. G. (2017). Physics conclusions in support of ITER W divertor monoblock shaping. Nuclear Materials and Energy, 12, 60-74. https://doi.org/10.1016/j.nme.2017.03.005 (Original work published 2017)