RE-211相粒子を添加した(Nd, Eu, Gd)Ba2Cu3Oy超電導体の高温度領域の磁束ピンニング特性

勝 木内, Nahid Mohammed, 荘司 小田部, 照男 松下, Muralidhar Miryala
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引用次数: 1

Abstract

Critical current density, Jc, and irreversibility field, Bi, were measured in a magnetic field along the c-axis for (Nd, Eu, Gd)Ba2Cu3Oy (NEG-123) bulk superconductors with the addition of Rare Earth (RE)-211 phase particles in order to correctly understand the flux-pinning mechanism in these superconductors. It was found that the peak value of the critical current density, Jcp, increased and that Bi tends to decrease with the addition of 211 phase particles. That is, a negative correlation exists between Jcp and Bi. The deterioration of Bi is mainly attributed to the deterioration of the upper critical field, Bc2, caused by the proximity effect between substituted regions with lower Bc2 and the surrounding 123 matrix. The peak effect is caused by the order-disorder transition of the flux lines with the assistance of pinning by the nano-lamellas. The observed results can be explained well by the theoretical predictions of the flux creep-flow model.
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添加了RE-211相粒子的(Nd, Eu, Gd)Ba2Cu3Oy超电导体的高温度区域的磁通引针特性
为了正确理解(Nd, Eu, Gd)Ba2Cu3Oy (NEG-123)块状超导体中添加稀土(RE)-211相粒子时的磁钉机制,在沿c轴磁场中测量了临界电流密度Jc和不可逆性场Bi。结果表明,随着211相粒子的加入,临界电流密度Jcp的峰值增大,Bi有减小的趋势。即Jcp与Bi呈负相关。Bi的恶化主要是由于较低Bc2的取代区与周围123矩阵的邻近效应导致上部临界场Bc2的恶化。峰效应是由纳米片的钉住作用下通量线的有序-无序过渡引起的。用通量蠕变-流动模型的理论预测可以很好地解释观测结果。
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