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Single crystal growth and LPE thin film process for RE-123 superconducting materials

机译:RE-123超导材料的单晶生长和LPE薄膜工艺

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Fundamentals of solidification processing for high-T-c superconductors (HTSC) and the progress of the crystal pulling and liquid phase epitaxy (LPE) processes were reviewed. RE-123 crystal is solidified by peritectic reaction with diffusion through the liquid. Based on this idea, a modified CZ (SRL-CP) method was developed for continuous single crystal growth. The large Nd123 single crystal, 25 x 25 x 25 mm(3) in size, was grown by optimizing the growth conditions. The high crystallinity in Y123 single crystal, which means monograin, was also realized by using Y123 seed crystals cut out of the best possible crystalline part of the single crystal grown separately. Additionally, the growth mechanism was discussed using the solidification model. Tn the LPE process, the highly aligned films in both c-axis and in-plane can be grown with the high superconducting characteristics, such as J(c). The self-improvement mechanism for in-plane alignment due to preferential dissolution/growth was explained by the difference in the MgO/Y123 interface energies with different orientations. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 23]
机译:综述了高T-c超导体(HTSC)凝固过程的基本原理以及拉晶和液相外延(LPE)工艺的进展。 RE-123晶体通过包晶反应固化,扩散通过液体。基于此想法,开发了一种改进的CZ(SRL-CP)方法,用于连续单晶生长。通过优化生长条件来生长尺寸为25 x 25 x 25 mm(3)的大型Nd123单晶。 Y123单晶的高结晶度(也就是单晶)也可以通过使用从单独生长的单晶的最佳结晶部分切出的Y123晶种来实现。此外,使用凝固模型讨论了生长机理。通过LPE工艺,可以在c轴和平面内都生长具有高超导特性(例如J(c))的高度取向的薄膜。 MgO / Y123界面能在不同方向上的差异解释了由于优先溶解/生长而引起的面内对准的自我改进机制。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:23]

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