Research field (4):
Nuclear fusion
, Basic plasma science
, Applied plasma science
, Information security
Research keywords (3):
Peripheral Region in Nuclear Fusion Reactor
, Materials for Nuclear Fusion Reactor
, Numerical Simulation
Research theme for competitive and other funds (4):
2007 - 2011 Theory and code development for evaluation of tritium retention and exhaust in fusion reactor
1999 - 2000 3次元ダイバータ解析手法の構築
1998 - ダイバータプラズマの3次元解析
1998 - 3-Dimensional Analysis of Divertor Plasmas
Papers (49):
Atsushi M Ito, Arimichi Takayama, Hiroaki Nakamura. Tungsten Nanostructure Growth by Sputtering and Redeposition in BCA-MD-KMC Hybrid Simulation. Materials Research Express. 2023
Atsushi M. Ito, Arimichi Takayama, Yuto Toda. High accuracy interatomic potential model for binary collision approximation and its application into sputtering yield estimation for amorphous carbon. Japanese Journal of Applied Physics. 2023. 62. SL. SL1012-SL1012
高山有道, 伊藤篤史, 中村浩章, 中村浩章. Dependence on incident angle of projectile atom in deposition process of tungsten. プラズマ・核融合学会年会(Web). 2020. 37th
伊藤篤史, 高山有道, 中村浩章, 中村浩章. Importance of sputtering and redeposition processes on the growth of Fuzz in numerical simulation. プラズマ・核融合学会年会(Web). 2020. 37th