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Items where Author is "De Temmerman, Gregory"

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Shigin, Pavel and Babinov, Nikita and De Temmerman, Gregory and Danisi, Alessandro and Dmitriev, Artem and Larsen, Jens and Madsen, Rene and Marot, Laurent and Moser, Lucas and Mukhin, Eugene and Kochergin, Mikhail and Ortiz, Rafael and Razdobarin, Alexey and Reichle, Roger and Pitts, Richard and Samsonov, Dmitry and Tsalas, Maximos and Udintsev, Victor and Vayakis, George and Walsh, Michael. (2021) RF Discharge Mirror Cleaning System Development for ITER Diagnostics. Fusion Engineering and Design, 164. p. 112162.

Ben Yaala, Marwa and Saeedi, Arsalan and Scherrer, Dan-Felix and Moser, Lucas and Steiner, Roland and Zutter, Marco and Oberkofler, Martin and De Temmerman, Gregory and Marot, Laurent and Meyer, Ernst. (2019) Plasma-assisted catalytic formation of ammonia in N-2-H-2 plasma on a tungsten surface. Physical Chemistry Chemical Physics, 21 (30). pp. 16623-16633.

Tanyeli, Irem and Marot, Laurent and Mathys, Daniel and van de Sanden, Mauritius C. M. and De Temmerman, Gregory. (2015) Surface Modifications Induced by High Fluxes of Low Energy Helium Ions. Scientific Reports, 5. p. 9779.

Tanyeli, Irem and Marot, Laurent and van de Sanden, Mauritius C. M. and De Temmerman, Gregory. (2014) Nanostructuring of Iron Surfaces by Low-Energy Helium Ions. ACS Applied Materials and Interfaces, 6 (5). pp. 3462-3468.

Bystrov, Kirill and van der Vegt, Lenze and De Temmerman, Gregory and Arnas, Cécile and Marot, Laurent. (2013) Reorganization of Graphite Surfaces into Carbon Micro- and Nanoparticles under High Flux Hydrogen Plasma Bombardment. Journal of Vacuum Science and Technology A, 31. 011303.

De Temmerman, Gregory and Bystrov, Kirill and Zielinski, Jakub J. and Balden, Martin and Matern, Gabriele and Arnas, Cecile and Marot, Laurent. (2012) Nanostructuring of Molybdenum and Tungsten Surfaces by Low-Energy Helium Ions. Journal of Vacuum Science and Technology A, 30. 041306.

Marot, Laurent and Steiner, Roland and De Temmerman, Gregory and Oelhafen, Peter. (2009) Reactivity of Rhodium during Co-Deposition of Rhodium and Carbon. Journal of Nuclear Materials, 390-391. pp. 1135-1137.

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