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Divertor and Plasma-Facing Components

The Effect of Annealing on the Transient Deuterium Permeation Characteristics of Tungsten

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Pages 894-898 | Published online: 17 Jan 2018

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Hirofumi Nakamura, Wataru Shu, Takumi Hayashi, Shigeru O’Hira, Masataka Nishi & Masayasu Sugisaki. (2002) Study on Deuterium Permeation Through Copper and F82H Low Activation Steel by Ion Implantation. Fusion Science and Technology 41:3P2, pages 887-891.
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S. Tanaka, M. Nishikawa, Y. Ichimasa & M. Nishi. (2002) Activities of Tritium Studies in Japan. Fusion Science and Technology 41:3P2, pages 305-313.
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Articles from other publishers (5)

Yu. Gasparyan, M. Rasinski, M. Mayer, A. Pisarev & J. Roth. (2011) Deuterium ion-driven permeation and bulk retention in tungsten. Journal of Nuclear Materials 417:1-3, pages 540-544.
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A. V. Golubeva, M. Mayer, Yu. M. Gasparyan, J. Roth & V. A. Kurnaev. (2009) The ion-driven permeation experiment PERMEX. Review of Scientific Instruments 80:7.
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Yu.M. Gasparyan, A.V. Golubeva, M. Mayer, A.A. Pisarev & J. Roth. (2009) Ion-driven deuterium permeation through tungsten at high temperatures. Journal of Nuclear Materials 390-391, pages 606-609.
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Hirofumi Nakamura, Wataru Shu, Takumi Hayashi & Masataka Nishi. (2003) Tritium permeation study through tungsten and nickel using pure tritium ion beam. Journal of Nuclear Materials 313-316, pages 679-684.
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Hirofumi Nakamura, Takumi Hayashi, Toshiya Kakuta, Takumi Suzuki & Masataka Nishi. (2001) Tritium permeation behavior implanted into pure tungsten and its isotope effect. Journal of Nuclear Materials 297:3, pages 285-291.
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