The mobility of small vacancy/helium complexes in tungsten and its impact on retention in fusion-relevant conditions
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Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41598-017-02428-2.pdf
Reference51 articles.
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2. Takamura, S., Ohno, N., Nishijima, D. & Kajita, S. Formation of nanostructured tungsten with arborescent shape due to helium plasma irradiation. Plasma Fusion Res. 1, 51–051, doi: 10.1585/pfr.1.051 (2006).
3. Baldwin, M. J. & Doerner, R. P. Helium induced nanoscopic morphology on tungsten under fusion relevant plasma conditions. Nucl. Fusion 48, 035001, doi: 10.1088/0029-5515/48/3/035001 (2008).
4. Baldwin, M. J., Doerner, R. P., Nishijima, D., Tokunaga, K. & Ueda, Y. The effects of high fluence mixed-species (deuterium, helium, beryllium) plasma interactions with tungsten. J. Nucl. Mater. 390, 886–890, doi: 10.1016/j.jnucmat.2009.01.247 (2009).
5. Nishijima, D., Ye, M.-Y., Ohno, N. & Takamura, S. Formation mechanism of bubbles and holes on tungsten surface with low-energy and high-flux helium plasma irradiation in NAGDIS-II. J. Nucl. Mater. 329, 1029–1033, doi: 10.1016/j.jnucmat.2004.04.129 (2004).
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