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Masato Murakami

Researcher at Shibaura Institute of Technology

Publications -  812
Citations -  16032

Masato Murakami is an academic researcher from Shibaura Institute of Technology. The author has contributed to research in topics: Superconductivity & Flux pinning. The author has an hindex of 54, co-authored 769 publications receiving 15031 citations. Previous affiliations of Masato Murakami include Nagoya University & Vienna University of Technology.

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Investigations of (Gd, Dy)BCO bulk superconductors fabricated via top-seeded infiltration growth process

TL;DR: In this paper, the amount of Dysprosium (Dy) added to the top-seeded IG processed bulk high-temperature GdBa 2Cu3.O , 7−δ, superconductors was optimized for an enhancement of flux pinning.
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Comparison of long-term patency after endovascular therapy for superficial femoral artery occlusive disease between patients with and without hemodialysis.

TL;DR: To compare long‐term patency after endovascular therapy (EVT) for superficial femoral artery (SFA) occlusive disease between patients with hemodialysis (HD; HD+) and those without HD (HD−).
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Enhancement of critical current density in (Nd, Eu, Gd)-Ba-Cu-O superconductors

TL;DR: In this article, the authors achieved a critical current density (J c ) of 70,000 A/cm 2 at 77 K in 2.3 T and a large irreversibility field exceeding 7 T at 77 k for the fields parallel to the c axis in (Nd, Eu, Gd)-Ba-Cu-O in which 40 mol% (nd, eu, gd) 2 BaCuO 5 (NEG211) second phase particles are finely dispersed in the melt process under oxygen partial pressure of 0.1%.
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Enhanced flux pinning of single grain bulk (Gd, Dy)BCO superconductors processed by cold-top-seeded infiltration growth method

TL;DR: In this paper, a single grain (Gd, Dy)BCO bulks were fabricated via cold-top-seeded infiltration growth process in air and the combined addition of Pt and CeO2 in each amount of 0.2% increased the critical current density (Jcab, B‖c-axis) to 105 A/cm2 at 77 K and self-field.
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Growth of large bulk Y–Ba–Cu–O with multi-seeding

TL;DR: In this paper, the influence of the processing parameters such as the maximum heating temperature, the dwelling time at this temperature, and the temperature to start slow cooling and the slow cooling rate on the grain growth behavior was investigated.