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High critical current density and enhanced irreversibility field in superconducting MgB2 thin films.

机译:超导MgB2薄膜中的高临界电流密度和增强的不可逆场。

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摘要

The discovery of superconductivity at 39 K in magnesium diboride offers the possibility of a new class of low-cost, high-performance superconducting materials for magnets and electronic applications. This compound has twice the transition temperature of Nb3Sn and four times that of Nb-Ti alloy, and the vital prerequisite of strongly linked current flow has already been demonstrated. One possible drawback, however, is that the magnetic field at which superconductivity is destroyed is modest. Furthermore, the field which limits the range of practical applications-the irreversibility field H*(T)-is approximately 7 T at liquid helium temperature (4.2 K), significantly lower than about 10 T for Nb-Ti (ref. 6) and approximately 20 T for Nb3Sn (ref. 7). Here we show that MgB2 thin films that are alloyed with oxygen can exhibit a much steeper temperature dependence of H*(T) than is observed in bulk materials, yielding an H* value at 4.2 K greater than 14 T. In addition, very high critical current densities at 4.2 K are achieved: 1 MA cm-2 at 1 T and 105 A cm-2 at 10 T. These results demonstrate that MgB2 has potential for high-field superconducting applications.
机译:在二硼化镁中39 K处发现超导性为磁体和电子应用提供了一种新型的低成本,高性能超导材料。该化合物的转变温度是Nb3Sn的两倍,是Nb-Ti合金的四倍,并且已经证明了强链接电流的重要前提。然而,一个可能的缺点是破坏超导性的磁场是适度的。此外,限制实际应用范围的场-不可逆场H *(T)-在液氦温度(4.2 K)时约为7 T,明显低于Nb-Ti的约10 T(参考文献6), Nb3Sn约为20 T(参考7)。在这里,我们表明,与氧合金化的MgB2薄膜,其H *(T)的温度依赖性比在散装材料中所观察到的要陡得多,在4.2 K处的H *值大于14T。达到了4.2 K的临界电流密度:在1 T下为1 MA cm-2,在10 T下为105 A cm-2。这些结果表明,MgB2具有用于高场超导应用的潜力。

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