论文标题
改进的智能元渗透导体MGB2
An improved smart meta-superconductor MgB2
论文作者
论文摘要
常规超导体的临界过渡温度(TC),电流密度(JC)和MEISSNER效应(HC)的提高和改善是超导性研究中最重要的问题,但是多年来的进步一直很慢。在这项研究中,通过引入带有红色波长的P-N连接电发光不均匀阶段以实现能量注射,我们发现了智能元超导体MGB2的提高性能,关键过渡温度TC的临界过渡温度TC增加了0.8K,当前密度JC的当前密度JC与Diamagnetism prike and MeissnerSners效应HC相比,当前的密度JC增加了37%。与以前的氧化氧化物不均匀期相比,P-N结具有更高的发光强度,更长的稳定寿命和更简单的外部野外要求。超导电子与表面等离子体极性子之间的耦合可以解释这种现象。通过这种电燃料不均匀阶段实现智能元渗透导体,这为改善超导体的性能提供了一种新的方法。
Increasing and improving the critical transition temperature (Tc), current density (Jc) and Meissner effect (Hc) of conventional superconductors are the most important problems in superconductivity research, but progress has been slow for many years. In this study, by introducing the p-n junction electroluminescent inhomogeneous phase with red wavelength to realize energy injection, we found the improved property of smart meta-superconductors MgB2, the critical transition temperature Tc increases by 0.8K, the current density Jc increases by 37%, and the diamagnetism of Meissner effect Hc also significantly improved, compared with pure MgB2. Compared with previous yttrium oxide inhomogeneous phase, p-n junction has higher luminescence intensity, longer stable life and simpler external field requirements. The coupling between superconducting electrons and surface plasmon polaritons may be explain this phenomenon. The realization of smart meta-superconductor by this electroluminescent inhomogeneous phase provides a new way to improve the performance of superconductors.