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Enhancement of critical current densities in (Ba,K)Fe$$_{2}$$As$$_{2}$$ by 320 MeV Au irradiation in single crystals and by high-pressure sintering in powder-in-tube wires

(Ba,K)Fe$$_{2}$$As$$_{2}$$単結晶およびパウダーインチューブ法で高圧焼成した試料への320MeV Auイオン照射による臨界電流密度の増加

Pyon, S.*; 田縁 俊光*; 大竹 史哲*; 土屋 雄司*; 井上 啓*; 秋山 弘樹*; 梶谷 秀樹; 小泉 徳潔; 岡安 悟; 為ヶ井 強*

Pyon, S.*; Taen, Toshihiro*; Otake, Fumiaki*; Tsuchiya, Yuji*; Inoue, Hiroshi*; Akiyama, Hiroki*; Kajitani, Hideki; Koizumi, Norikiyo; Okayasu, Satoru; Tamegai, Tsuyoshi*

単結晶(Ba,K)Fe$$_{2}$$As$$_{2}$$試料に320MeV Auイオン照射を行い、臨界電流密度$$J$$$$_{rm c}$$が5Kの自己磁場で1.0$$times$$10$$^{7}$$A/cm$$^{2}$$まで上昇することを確かめた。この物質の潜在能力の高さから(Ba,K)Fe$$_{2}$$As$$_{2}$$超伝導線材をBi2223テープ材の工業生産で有用性が確立しているパウダーインチューブ法と高温静水圧法を組み合わせて作製した。この試料で臨界電流密度$$J$$$$_{rm c}$$は4.2K自己磁場で37kA/cm$$^{2}$$、90kOeで3.0kA/cm$$^{2}$$に達した。磁気光学イメージ法でこの線材の粒間に大きな$$J$$$$_{rm c}$$が流れることを確認した。

We demonstrate a large enhancement of critical current density ($$J$$$$_{rm c}$$) up to 1.0 $$times$$ 10$$^{7}$$ A/cm$$^{2}$$ at 5 K under self-field in (Ba,K)Fe$$_{2}$$As$$_{2}$$ single crystals by irradiating 320 MeV Au ions. With the very promising potential of this material in mind, we have fabricated a (Ba,K)Fe$$_{2}$$As$$_{2}$$ superconducting wire through a powder-in-tube method combined with the hot isostatic pressing technique, whose effectiveness has been proven in industrial Bi2223 tapes. The Jc in the wire at 4.2 K has reached 37 kA/cm$$^{2}$$ under self-field and 3.0 kA/cm$$^{2}$$ at 90 kOe. Magneto-optical imaging of the wire confirmed the large intergranular Jc in the wire core.

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パーセンタイル:31.57

分野:Physics, Applied

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