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First-principles calculations of electron states of a silicon nanowire with 100,000 atoms on the K computer
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Authors:
Yukihiro Hasegawa
Next-Generation Supercomputer R&D Center, Riken
Jun-Ichi Iwata
University of Tsukuba
Miwako Tsuji
University of Tsukuba
Daisuke Takahashi
University of Tsukuba
Atsushi Oshiyama
The University of Tokyo
Kazuo Minami
Next-Generation Supercomputer R&D Center, Riken
Taisuke Boku
University of Tsukuba
Fumiyoshi Shoji
Next-Generation Supercomputer R&D Center, Riken
Atsuya Uno
Next-Generation Supercomputer R&D Center, Riken
Motoyoshi Kurokawa
Next-Generation Supercomputer R&D Center, Riken
Hikaru Inoue
Technical Computing Solution Unit, Fujitsu Limited
Ikuo Miyoshi
Next Generation Technical Computing Unit, Fujitsu Limited
Mitsuo Yokokawa
Next-Generation Supercomputer R&D Center, Riken
2011 Article
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Published in:
· Proceeding
SC '11 Proceedings of 2011 International Conference for High Performance Computing, Networking, Storage and Analysis
Article No. 1
ACM
New York, NY
, USA
©2011
table of contents
ISBN: 978-1-4503-0771-0
doi>
10.1145/2063384.2063386
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Tags:
engineering
k computer
next-generation supercomputer
performance
peta-flops
physics
real-space density functional theory
rsdft
self-consistent electron states
silicon nanowire
tofu
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