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Dislocation structure of low-angle grain boundaries in YBa_2Cu_3O_71δ/MgO films

机译:YBa_2Cu_3O_71δ/ MgO薄膜中低角度晶界的位错结构

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Grain boundaries in laser-deposited YBa_2Cu_3O_7-δ(YBCO)/MgO thin films have been investigated by high-resolution transmission electron microscopy. The films exhibit perfect texturing with YBCO(001)/MgO(001) giving rise to low-angle [00l] tilt grain boundaries resulting from the grains with the c axis normal to the substrate surface and with misorientation in the a-b plane. The atomic structure of the grain boundaries was analyzed by using a dislocation model. Low-angle grain boundaries have been found to be aligned along (100) and (l10) interface planes. For the (110) boundary plane, the low-energy dislocation configuration was found to consist of an array of altemating [100] and [010] dislocations. We have calculated the energy of various configurations and shown that the energy of the (110) boundary with dissociated dislocations is comparable to that of the (100) boundary, which explains the coexistence of (100) and (ll0) interface facets along the boundary. We have also modeled critical current transport through grain boundaries with various structures and found that the low-energy (1l0) grain boundary with dissociated dislocation array is expected to transport a lower superconducting current (by 25 for 6 deg. misorientation) than (100) boundaries.
机译:通过高分辨率透射电子显微镜研究了激光沉积的YBa_2Cu_3O_7-δ(YBCO)/ MgO薄膜中的晶界。膜表现出完美的YBCO(001)/ MgO(001)织构,从而导致低角度[00l]倾斜晶界,这是由于c轴垂直于基材表面且a-b平面取向错误的晶粒所致。利用位错模型分析了晶界的原子结构。已经发现低角度晶界沿着(100)和(110)界面平面对准。对于(110)边界平面,发现低能位错配置由交替的[100]和[010]位错阵列组成。我们已经计算了各种构型的能量,并显示了具有解离位错的(110)边界的能量与(100)边界的能量相当,这说明了(100)和(ll0)界面沿边界的共存。我们还对具有各种结构的穿过晶界的临界电流传输进行了建模,发现具有离解位错阵列的低能(1l0)晶界有望传输比(100)更低的超导电流(6度取向不良时,传输电流降低25)。边界。

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