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Flux pinning behaviors of Ti and C co-doped MgB2 superconductors

机译:Ti和C共掺杂MgB2超导体的磁通钉扎行为

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Flux pinning behavior of carbon and titanium concurrently doped MgB2 alloys has been studied by ac susceptibility and do magnetization measurements. It is found that critical current density and irreversibility field of MgB2 have been significantly improved by doping C and Ti concurrently, sharply contrasted to the situation of C-only-doped or Ti-only-doped MgB2 samples. AC susceptibility measurement reveals that the dependence of the pinning potential on the do applied field of Mg0.95Ti0.05B1.95C0.05 has been determined to be U(B-dc) alpha B-dc(-1) compared to that of MgB2 U(B-dc) alpha B-dc(-1.5). As to the U(J) behavior, a relationship of U(J) alpha J(-0.17) is found fitting well for Mg0.95Ti(0.05)B(1.95)C(0.05) with respect to U(J) alpha J(-0.21) for MgB2. All the results reveal a strong enhancement of the high field pinning potential in C and Ti co-doped MgB2.
机译:通过交流磁化率和磁化测量研究了碳和钛同时掺杂的MgB2合金的助焊剂钉扎行为。发现通过同时掺杂C和Ti可以显着改善MgB2的临界电流密度和不可逆性,这与仅掺杂C或仅掺杂Ti的MgB2样品的情况形成鲜明对比。交流磁化率测量表明,钉扎电位对Mg0.95Ti0.05B1.95C0.05的do施加场的依赖性已确定为与MgB2相比为U(B-dc)alpha B-dc(-1) U(B-dc)alpha B-dc(-1.5)。关于U(J)行为,发现U(J)alpha J(-0.17)与Mg0.95Ti(0.05)B(1.95)C(0.05)相对于U(J)alpha J的关系很好(-0.21)对于MgB2。所有结果表明,在C和Ti共掺杂的MgB2中,高场钉扎势的增强。

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