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Surface morphology of tungsten exposed to helium plasma at temperatures below fuzz formation threshold 1073 K

Ryuichi Sakamoto, Elodie Bernard, Arkadi Kreter, Naoaki Yoshida2017年被引用 39Nuclear FusionIF 3出版社

Impact of crystal orientation on the surface morphology of the helium plasma exposed tungsten has been investigated on the linear device PSI-2. A nanoscale undulating surface structure having a periodic arrangement is formed for temperatures below 1073 K, in contrast to the fuzz nanostructure formation in a higher temperature range. The crests of undulation align with the direction. The interval of the undulation is narrowest at the crystal grain of {1 1 0} surface. The interval becomes wider as the crystal grain surface tilts away from the {1 1 0} surface, and the undulating surface structure is not formed near the {1 0 0} surface. The height of undulations is nm, independently of the interval of the undulations, and it corresponds to the depth of the layer heavily damaged due to helium plasma exposure.

日本語訳

ヘリウムプラズマ曝露タングステンの表面形態に及ぼす結晶方位の影響が、線形装置PSI-2において調査された。ナノスケールの周期的配列を有する波状表面構造は、1073 K未満の温度で形成され、より高温域でのファズナノ構造形成とは対照的である。波状構造の頂部は、方向に整列する。波状構造の間隔は、{1 1 0}表面の結晶粒において最も狭い。間隔は、結晶粒表面が{1 1 0}表面から傾くにつれて広くなり、{1 0 0}表面付近では波状表面構造は形成されない。波状構造の高さはnmであり、間隔には依存せず、ヘリウムプラズマ曝露によって著しく損傷を受けた層の深さに対応する。

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