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Oxygen Diffusion in Superconducting Oxides

机译:超导氧化物中的氧扩散

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摘要

Since the discovery of high-temperature superconductivity of cuprate oxides, it has been clear that it is strongly affected by the oxygen content, which is also a crucial factor to determine other physical properties of high Tc superconductors, Non-stoichiometric (interstitial) oxygen strongly influences the physical properties of various superconducting oxides, in particular by creating conducting holes It is now ascertained that the amount of holes injected depends not only on the content of interstitial oxygen, but also on its ordering Rearrangement of the oxygen ordering may occur even below room temperature due to the unusual high mobility of these atoms. This way, mechanical spectroscopy is one of the most adequate techniques for the study of the mobility (diffusion) of oxygen atoms. This technique allows the determination of the jump frequency of an atomic species precisely, regardless of the model or the different possible types of jumps. In order to evaluate the mobility and the effect of oxygen content on these oxides, ceramic samples we prepared and submitted to several oxygen removal cycles alternately with mechanical relaxation measurements. As for SBCO, it was assumed that the peak was due to O(l)-O(5) jumps of oxygen atoms at the chain terminals or in chain fragments in the orthorhombic phase. In the case of BSCCO, the results showed complex anelastic relaxation structures, which were attributed to interstitial oxygen atom jumps between two adjacent CuO planes.
机译:自从发现铜酸盐氧化物的高温超导性以来,很明显它受到氧含量的强烈影响,这也是确定高Tc超导体其他物理性质的关键因素,非化学计量(间隙)氧会影响各种超导氧化物的物理性能,特别是通过形成导电孔。现已确定,注入的空穴量不仅取决于间隙氧的含量,还取决于其有序化,甚至在室温以下也可能发生氧有序化的重排这些原子异常高的迁移率导致温度升高。这样,机械光谱法是研究氧原子迁移率(扩散)的最合适的技术之一。该技术允许精确确定原子种类的跳跃频率,而与跳跃的模型或可能的不同类型无关。为了评估迁移率和氧含量对这些氧化物的影响,我们制备了陶瓷样品,并通过机械弛豫测量交替进行了几个除氧循环。对于SBCO,假定该峰是由于正交相中链末端或链片段中氧原子的O(1)-O(5)跃迁所致。在BSCCO的情况下,结果显示复杂的无弹性弛豫结构,这归因于两个相邻CuO平面之间的间隙氧原子跃迁。

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