Moe Sakurai
Tokyo Institute of Technology
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Featured researches published by Moe Sakurai.
Science Advances | 2017
Hongzhan Fei; Daisuke Yamazaki; Moe Sakurai; Nobuyoshi Miyajima; Hiroaki Ohfuji; Tomoo Katsura; Takafumi Yamamoto
The mantle transition zone contains 1 to 2 weight % water based on the viscosity difference between ringwoodite and bridgmanite. An open question for solid-earth scientists is the amount of water in Earth’s interior. The uppermost mantle and lower mantle contain little water because their dominant minerals, olivine and bridgmanite, have limited water storage capacity. In contrast, the mantle transition zone (MTZ) at a depth of 410 to 660 km is considered to be a potential water reservoir because its dominant minerals, wadsleyite and ringwoodite, can contain large amounts of water [up to 3 weight % (wt %)]. However, the actual amount of water in the MTZ is unknown. Given that water incorporated into mantle minerals can lower their viscosity, we evaluate the water content of the MTZ by measuring dislocation mobility, a property that is inversely proportional to viscosity, as a function of temperature and water content in ringwoodite and bridgmanite. We find that dislocation mobility in bridgmanite is faster by two orders of magnitude than in anhydrous ringwoodite but 1.5 orders of magnitude slower than in water-saturated ringwoodite. To fit the observed mantle viscosity profiles, ringwoodite in the MTZ should contain 1 to 2 wt % water. The MTZ should thus be nearly water-saturated globally.
American Mineralogist | 2015
Kyoko N. Matsukage; Yu Nishihara; Fumiya Noritake; Katsuyuki Kawamura; Noriyoshi Tsujino; Moe Sakurai; Yuji Higo; Junichi Nakajima; Akira Hasegawa; Eiichi Takahashi
Abstract To understand the origin of observed low velocities in the crustal portion of subducting plates, we performed in situ measurements of elastic wave velocities of anorthite at temperatures up to 1373 K at pressure of ~1 GPa and up to 773 K at 2.0-7.0 GPa. A fine-grained polycrystalline anorthite, which was synthesized using a gas pressure apparatus, was used for the measurements. The high-pressure experiments were performed using the multi-anvil apparatus installed on beamline BL04B1 at SPring-8. The elastic wave velocity was measured by the ultrasonic pulse method with synchrotron X‑ray radiographic imaging and X‑ray diffraction techniques. At ~1.0 GPa, elastic wave velocities exhibited a sharp temperature-induced kink at ~500 K. Below 500 K, the elastic wave velocities decrease with increasing temperature. In contrast, above 500 K, the elastic wave velocities show an increasing trend in the range of 500-900 K, and then revert back to a decreasing trend at above 900 K. We also found a pressure-induced velocity anomaly of anorthite. At 300-373 K, νP is constant up to 4 GPa, but decrease above 4 GPa with increasing pressure, while νS decreases monotonously with increasing pressure. These elastic anomalies are considered to be attributable to the tilting behavior of the corner-sharing TO4 (T = Al, Si) tetrahedra in three-dimensional frameworks of anorthite. Our results suggest the presence of plagioclase feldspar has the potential to causes low-velocity anomaly in the subducting oceanic crust when it survives as a metastable phase in the slab at higher pressure and lower temperature conditions.
Earth and Planetary Science Letters | 2014
Moe Sakurai; Noriyoshi Tsujino; Hiroshi Sakuma; Katsuyuki Kawamura; Eiichi Takahashi
Physics of the Earth and Planetary Interiors | 2016
Keisuke Nishida; Akio Suzuki; Hidenori Terasaki; Yuki Shibazaki; Yuji Higo; Souma Kuwabara; Yuta Shimoyama; Moe Sakurai; Masashi Ushioda; Eiichi Takahashi; Takumi Kikegawa; Daisuke Wakabayashi; Nobumasa Funamori
Japan Geoscience Union | 2017
Noriyoshi Tsujino; Daisuke Yamazaki; Moe Sakurai; Fang Xu; Yuji Higo
Japan Geoscience Union | 2017
Moe Sakurai; Noriyoshi Tsujino; Shigehiko Tateno; Toshihiro Suzuki; Takashi Yoshino; Katsuyuki Kawamura; Eiichi Takahashi
Japan Geoscience Union | 2016
Takashi Yoshino; Moe Sakurai; Naoya Sakamoto; Hisayoshi Yurimoto
Japan Geoscience Union | 2015
Noriyoshi Tsujino; Daisuke Yamazaki; Takashi Yoshino; Moe Sakurai; Fang Xu; Yuji Higo
Japan Geoscience Union | 2015
Moe Sakurai; Noriyoshi Tsujino; Shigehiko Tateno; Toshihiro Suzuki; Takashi Yoshino; Katsuyuki Kawamura; Eiichi Takahashi
Journal of Computer Chemistry, Japan | 2014
Moe Sakurai; Hiroshi Sakuma; Noriyoshi Tsujino; Eiichi Takahashi; Katsuyuki Kawamura