Miyajima, Nobuyoshi |
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Miyajima, Nobuyoshi |
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(Ph.D. 1997, Hokkaido University) |
Tel.: | +49 (0)921 55 3728 |
Fax.: | +49 (0)921 55 3769 |
Building: | BGI, University Bayreuth |
Room: | 1.1.03 |
Email.: | nobuyoshi.miyajima(at)uni-bayreuth.de |
www.: | |
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Research Interests: |
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High pressure mineralogy, Operation and supervising TEM laboratory |
Education: |
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- 1990 – 1994 Study of geology and mineralogy at Hokkaido Univ. Japan
- 1997 Ph.D. in mineralogy, Hokkaido Univ. Japan
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Professional Experience: |
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- 1996 – 1998 Research Fellow of the Japan Society for the Promotion of Science, Division of Earth and Planetary Sciences, Hokkaido Univ. Japan
- 1998 – 2000 Research Fellow in Institute for Solid State Physics, University of Tokyo. Japan
- 2000 – 2002 Post doctoral researcher at Bayerisches Geoinstitut,
Universität Bayreuth
- 2002 – 2005 Research associate in Institute for Solid State Physics, University of Tokyo. Japan
- 2005 – present Research associate (Akademischer Rat) at Bayerisches Geoinstitut, Universität Bayreuth
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Honours: |
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- 1997 Jamieson Award in AIRAPT -16 in Kyoto / Japan
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Recent publications: |
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updated: 14-08-2012
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Smyth, J. R., N. Miyajima, et al. (2012). “Olivine–wadsleyite–pyroxene topotaxy: Evidence for coherent nucleation and diffusion-controlled growth at the 410-km discontinuity.” Physics of Earth and Planetary Interior 200-201: 85-91.
- Miyajima, N., K. Niwa, et al. (2010). "Deformation microtextures in CaIrO3 post-perovskite under high stress conditions using a laser-heated diamond anvil cell." Journal of Physics: Conference Series 215: 012097 doi:10.1088/1742-6596/215/1/012097.
- Miyajima, N., T. Yagi, et al. (2009). "Dislocation microstructures of MgSiO3 perovskite at a high pressure and temperature condition." Physics of Earth and Planetary Interior 174: 153-158.
- Miyajima, N. and N. Walte (2009). "Burgers vector determination on deformed perovskite and post-perovskite in CaIrO3 using thickness-fringes in weak beam dark field images." Ultramicroscopy 109: 683-692.
- Miyajima, N., C. Holzapfel et al. (2009). "Combining FIB milling and conventional Argon ion milling techniques to prepare high quality site-specific TEM samples for quantitative EELS analysis of oxygen in molten iron." Journal of Microscopy 238: 200-209.
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